DEVICE AND METHOD FOR FILTERING A FLUID CIRCULATING IN A PLUMBING AND HEATING SYSTEM
20210052995 ยท 2021-02-25
Assignee
Inventors
Cpc classification
B01D2201/302
PERFORMING OPERATIONS; TRANSPORTING
B01D35/06
PERFORMING OPERATIONS; TRANSPORTING
C02F1/001
CHEMISTRY; METALLURGY
F24D19/1006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/35
PERFORMING OPERATIONS; TRANSPORTING
B01D29/902
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/35
PERFORMING OPERATIONS; TRANSPORTING
B01D35/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention relates to a device (1) for filtering a fluid circulating in a plumbing and heating system, said device comprising a body (2) which defines therewithin a filtration chamber (3) that is intended to have a fluid to be subjected to filtration pass through it. The body is provided with a first inlet/outlet opening (10), a second inlet/outlet opening (20) and a third inlet/outlet opening (30): each one of them sets the filtration chamber (3) in communication with the outside of the device and is associable with a line of the system so as to receive therefrom, or to send thereto, fluid entering, or exiting from, said body of the device. The device operates a passage of fluid through the filtration chamber (3), in a selective manner according to a plurality of operative configurations, from one opening among said first inlet/outlet opening (10), second inlet/outlet opening (20) and third inlet/outlet opening (30) to another opening among said first inlet/outlet opening (10), second inlet/outlet opening (20) and third inlet/outlet opening (30). The device further comprises: filtering members (40) that are housed inside the filtration chamber (3) and operatively interposed between the inlet/outlet openings to carry out filtering of the fluid passing through the filtration chamber; a flow-directing insert (70) that is housed inside the filtration chamber (3) and configured to channel the fluid passing through the filtration chamber, in each one of the operative configurations, so that the fluid passes at least partially through the filtering members (40).
Claims
1. A device (1) for filtering a fluid circulating in a plumbing and heating system, said device (1) comprising a body (2) of the device which defines therewithin a filtration chamber (3) that is destined to have a fluid to be subjected to filtration pass through it, said body being provided with: a first inlet/outlet opening (10), which sets said filtration chamber (3) in communication with the outside of the device and that is configured to be associated with a line so as to receive therefrom, or to send thereto, fluid incoming to, or exiting from, said body of the device; a second inlet/outlet opening (20), which sets said filtration chamber (3) in communication with the outside of the device and that is configured to be associated with a respective line so as to receive therefrom, or to send thereto, fluid incoming to, or exiting from, said body of the device; a third inlet/outlet, opening (30), which sets said filtration chamber (3) in communication with the outside of the device and that is configured to be associated with a respective line so as to receive therefrom, or to send thereto, fluid incoming to, or exiting from, said body of the device; the device being configured to operate a passage of fluid through said filtration chamber (3), in a selective manner according to a plurality of operative configurations, from one opening among said first inlet/outlet opening (10), said second inlet/outlet opening (20), and said third inlet/outlet opening (30) to another opening among said first inlet/outlet opening (10), said second inlet/outlet opening (20), and said third inlet/outlet opening (30), the device further comprising: filtering members (40) that are at least partially housed inside said filtration chamber (3), or associated with said body (2) of the device, and operatively interposed between said first inlet/outlet opening, said second inlet/outlet opening and said third inlet/outlet opening to carry out filtering of the fluid passimg through the filtration chamber; a flow-directing insert (70) that is housed inside said filtration chamber (3) and configured to channel the fluid passing through the filtration chamber, in each one of said plurality of operative configurations, so that the fluid passes at least partially through said filtering members (40).
2. The device (1) according to claim 1, wherein said flow-directing insert (70) is configured to operate selectively at least in either: a first position for use, in which it channels the fluid circulating inside the filtration chamber (3) so as to prevent direct passage of the fluid from the first opening (10) to the second opening (20) or from the first opening (10) to the third opening (30) without passing through the filtering members (40); or a second position for use, in which it channels the fluid circulating inside the filtration chamber (3) so as to prevent direct passage of the fluid from the second opening (20) to the first opening (10) or from the third opening (30) to the first opening (10) without passing through the filtering members (40).
3. The device (1) according to claim 1, comprising a closure element (4) that is configured to selectively intercept one opening among said first inlet/outlet opening (10), said second inlet/outlet opening (20), and said third inlet/outlet opening (30), and wherein said plurality of operative configurations comprise at least: a first operative configuration, in which said first opening (10) receives a flow of fluid incoming to the device, said second opening (20) sends the flow of filtered fluid exiting from the device and said third opening (30) is intercepted by said closure element; a second operative configuration, in which said first opening (10) receives a flow of fluid incoming to the device, said third opening (30) sends the flow of filtered fluid exiting from the device and said second opening (20) is intercepted by said closure element; a third operative configuration, in which said third opening (30) receives a flow of fluid incoming to the device, said first opening (10) sends the flow of filtered fluid exiting from the device and said second opening (20) is intercepted by said closure element; a fourth operative configuration, in which said second opening (20) receives a flow of fluid incoming to the device, said first opening (10) sends the flow of filtered fluid exiting from the device and said third opening (30) is intercepted by said closure element.
4. The device (1) according to claim 1, wherein said flow-directing insert (70) is configured to be selectively positioned: in said first position for use, when the device is operating in said first operative configuration or in said second operative configuration; in said second position for use, when the device is operating in said third operative configuration or in said fourth operative configuration, and/or wherein the flow-directing insert (70) has a central axis (71), an external wall (72) extending about said central axis and a passage section (73) inside the external wall and perpendicular to the central axis, the insert (70) having two opposite sides (74, 77) with respect to the central axis, wherein: a first side (74) is provided, on the external wall (72), with an edge (75) that is raised with respect to the passage section (73), and a partition (76) that intercepts said passage section (73); a second side (77) lacks a raised edge on the external wall and it lacks a partition on the passage section, thus enabling the passage of fluid through the passage section, and it is provided with a separation portion (78) emerging radially from the external wall (72), away from the central axis (71), and substantially aligned with the passage section (73), and/or wherein the insert (70) is structured in such a manner that: the second side (77) enables the passage of fluid, coining from the outside of the insert, through the passage section (73), along a first direction along said central axis (71); the first side (74) obstructs the passage of fluid, coming from the outside of the insert, through the passage section (73), and determines a process of directing it along a second direction along said central axis (71), opposite said first direction.
5. The device (1) according to claim 1, wherein said first side (74) and said second side (77) constitute two halves of said insert (70) which face each other and are connected along a dividing plane (79) in which the central axis (71) of the insert lies, and wherein the insert (70) is symmetric with respect to a plane of symmetry in which the central axis of the insert lies, and perpendicular to said dividing plane, and/or wherein: in said first position for use, the insert (70) is positioned in such a manner that the first side (74) thereof faces the third inlet/outlet opening (30) and the second side (77) thereof faces the first inlet/outlet opening (10); in said second position for use, the insert (70) is positioned in such a manner that the first side (74) thereof faces the first inlet/outlet opening (10) and the second side (77) thereof faces the third inlet/outlet opening (30).
6. The device (1) according to claim 1, wherein the body (2) of the device has a substantially cylindrical shape and it has a longitudinal axis (2A), an upper surface (5), an external lateral surface (6) and a lower surface (7), and wherein the first inlet/outlet opening (10) and the third inlet/outlet opening (30) are located on the external lateral surface (6) of the body of the device and on opposite sides with respect to the filtration chamber (3), and wherein the second inlet/outlet opening (20) is located on the upper surface (5) of the body of the device, and wherein the first inlet/outlet opening (10), the second inlet/outlet opening (20) and the third inlet/outlet opening (30) have a circular section and each one of said openings (10, 20, 30) has a respective central axis, and/or wherein the central axis of the second inlet/outlet opening (20) coincides with the longitudinal axis (2A) of the body (2) of the device, and/or wherein the central axis (71) of the insert (70) coincides with the longitudinal axis (2A) of the body (2) of the device and with the respective central axis of the second inlet/outlet opening (20).
7. The device (1) according to claim 1, wherein the flow-directing insert (70) is located inside the filtration chamber (3) in such a manner as to surround the second inlet/outlet opening (20), and wherein the filtration chamber (3) is delimited laterally by a lateral surface (3A), above by a top surface (3B) and below by a bottom surface (3C) of the body (2) of the device, and/or wherein the second inlet/outlet opening (20) is provided with a dividing wall (21) extending inside the filtration chamber (3) and located between the longitudinal axis (2A) of the body of the device and the first inlet/outlet opening (10), and/or wherein said dividing wall (21) extends, starting from the second inlet/outlet opening (20), inside the filtration chamber (3) along a direction parallel to the longitudinal axis (2A) of the body of the device and substantially to a height (Q) coinciding with the dimensions of the first inlet/outlet opening (10) on the external lateral surface (6) of the body (2) of the device, and/or wherein the dividing wall (21) ends below with a portion for diverting (22) the fluid and that extends towards the longitudinal axis (2A) of the body (2) of the device.
8. The device (1) according to claim 1, wherein the insert (70) is located, inside the filtration chamber (3), in such a manner that its external wall (72) externally surrounds the diverting portion (22) of the dividing wall (21), and/or wherein the diverting portion (22) of the dividing wall (21) is complementarily shaped with respect to the partition (76) of the first side (74) of the insert (70), and/or wherein the positioning of the insert (70) and the diverting portion (22) of the dividing wall (21) with respect to each other is such as to determine that: when the insert (70) is selectively set into said first position for use, the first side (74) of the insert proves to be on the side opposite the diverting portion (22) with respect to the longitudinal axis (2A) of the body, and facing it, so that the partition (76) and the diverting portion (22) completely intercept the passage section (73) of the insert (70), preventing the passage of fluid through the passage section; when the insert (70) is selectively set into said second position for use, the first side (74) of the insert is found on the same side as the diverting portion (22), with respect to the longitudinal axis (2A) of the body, and externally embraces the diverting portion (22), whereas the second side (77) of the insert is on the side opposite the diverting portion (22) with respect to the longitudinal axis (2A) of the body, and as the second side (77) lacks a partition, it enables the passage of fluid through the passage section (73), and/or wherein, when the insert (70) is selectively set into said first position for use, surface continuity is created between the partition (76) and the diverting portion (22) and it is such as to completely intercept the passage section (73) of the insert, and/or wherein passage of the insert (70) between the first position for use and the second position for use takes place by means of a rotation, preferably of 180, of the insert about its own central axis (71), and/or wherein the partition (76) of the insert (70) substantially has the shape of a portion of a spherical crown, or a portion of a spherical shell, and the diverting portion (22) of the dividing wall (21) substantially has a respective shape of a portion of a spherical crown, or a portion of a spherical shell.
9. The device (1) according to claim 1, wherein the filtering members (40) comprise a mechanical filter (41) configured to separate substances and solid particles present in the fluid to be treated from the fluid itself in which they are suspended, the mechanical filler (41) having a structure provided with a plurality of passages (42) that have a given filtering section, so that the passage of the fluid from one internal side (44) of the mechanical filter to an external side (43) of the mechanical filter determines retention, on the internal side (44), of the substances and particles present in the fluid and having dimensions greater than said filtering section, and/or wherein the mechanical filter (41) has a cylindrical shape extending along a central axis (45) between a first end (46) and a second end (47), and it is positioned inside the filtration chamber (3) in such a manner that said central axis (45) coincides with the longitudinal axis (2A) of the body (2) of the device, and/or wherein the mechanical filter (41) has a smaller radial dimension with respect to the radial dimension of the filtration chamber (3), so as to be distanced from the lateral surface (3A) of the chamber (3) and define, inside the chamber, a first chamber portion (8) outside the mechanical filter (41) and a second chamber portion (9) inside the mechanical filter (41), and/or wherein the mechanical filter (41) is positioned axially between the bottom surface (3C) of the body (2) of the device and the flow-directing insert (70), and/or wherein the mechanical filter (41) is positioned in the chamber under the insert (70) so as to be in fluid communication with the three inlet/outlet openings (10, 20, 30), but under them along the longitudinal axis (2A) of the body (2) of the device, in a direction away from the second inlet/outlet opening (20).
10. The device (1) according to claim 1, wherein the filtering members (40) comprise a magnetic filter (50) associated with the body (2) of the device and configured to collect and retain substances and particles having ferromagnetic properties and that are present in the fluid to be treated, in such a manner as to separate them from the fluid passing through the device, and/or wherein the body (2) of the device comprises a hollow protuberance (51) that emerges axially, in the filtration chamber, from said bottom surface (3C) towards said top surface (3B), said hollow protuberance (51) defining, outside the body (2) of the device, a housing (52) that is elongated in shape, corresponding to the hollow protuberance (51) and accessible from the lower surface (7), and/or wherein the magnetic filter (50) comprises at least one magnetic element (53) that is configured to generate a permanent magnetic field and inserted in said housing (52) of the body (2) in such a manner as to act upon the fluid passing through the filtration chamber (3) and retain the ferromagnetic substances and particles present in the fluid on the surface of said hollow protuberance (51) inside the body of the device, and/or wherein said hollow protuberance (51) emerging from the bottom surface (3C) is entirely contained inside the mechanical filter (41), so that the magnetic filter (50) is positioned inside said second portion (9) of the filtration chamber (3).
11. The device (1) according to claim 1, said device (1) being configured to operate selectively, when in use, in one of the following operative configurations: a first operative configuration, in which: the first inlet/outlet opening (10) is destined to be set into communication with a line coming from a plumbing and heating system, particularly a heating water return line from a system of heating elements, so as to receive a flow of water to be subjected to filtration; the second inlet/outlet opening (20) is destined to be set into communication with a line directed to a boiler of the plumbing and heating system, so as to send thereto the flow of water following filtration; the third inlet/outlet opening (30) is intercepted by a closure element (4); the flow-directing insert (70) is in said first position for use; via the second side (77) of the insert, and via the outside of the dividing wall (21), the flow of fluid incoming to the first opening (10) is conveyed directly through the passage section (73) of the insert and from there to the second portion (9) of the filtration chamber (3) inside the mechanical filter (41), where the fluid is filtered by the magnetic filter (50); the fluid flows, through the mechanical filter (41), out from the second portion (9) of the filtration chamber, and passes into the first portion (8) of the filtration chamber (3), and from there it is conveyed through the first side (74) of the insert (70) on towards the second opening (20), the fluid not being able to pass through the passage section (73) again because of the partition (76) of the first side (74) of the insert (74) and the diverting portion (22) of the dividing wall (21); a second operative configuration, in which: the first inlet/outlet opening (10) is destined to be set into communication with a line coming from a plumbing and heating system, particularly a heating water return line from a system of heating elements, so as to receive a flow of water to be subjected to filtration; the second inlet/outlet opening (20) is intercepted by a closure element (4); the third inlet/outlet opening (30) is destined to be set into communication with a line directed to a boiler of the plumbing and heating system, so as to send thereto the flow of water following filtration; the flow-directing insert (70) is in said first position for use; via the second side (77) of the insert, and via the outside of the dividing wall (21), the flow of fluid incoming to the first opening (10) is conveyed directly through the passage section (73) of the insert and from there to the second portion (9) of the filtration chamber (3) inside the mechanical filter (41), where the fluid is filtered by the magnetic filter (50); the fluid flows, through the mechanical filter (41), out from the second portion (9) of the filtration chamber, and passes into the first portion (8) of the filtration chamber (3), and from there it is conveyed through the first side (74) of the insert (70) on towards the third opening (30), the fluid not being able to pass through the passage section (73) again because of the partition (76) of the first side (74) of the insert and the diverting portion (22) of the dividing wall (21); a third operative configuration, in which: the third inlet/outlet opening (30) is destined to be set into communication with a line coming from a plumbing and heating system, particularly a heating water return line from a system of heating elements, so as to receive a flow of water to be subjected to filtration; the second inlet/opening (20) is intercepted by a closure element (4); the first inlet/outlet opening (10) is destined to be set into communication with a line directed to a boiler of the plumbing and heating system, so as to send thereto the flow of water following filtration; the flow-directing insert (70) is in said second position for use; via the second side (77) of the insert, the flow of fluid incoming to the third opening (10) is conveyed directly through the passage section (73) of the insert and from there to the second portion (9) of the filtration chamber (3) inside the mechanical filter (41), where the fluid is filtered by the magnetic filter (50); the fluid flows, through the mechanical filter (41), out from the second portion (9) of the filtration chamber, and passes into the first portion (8) of the filtration chamber (3), and from there it is conveyed through the first side (74) of the insert (70) on towards the first opening (10), the fluid not being able to pass through the passage section (73) again because of the raised edge (75) of the first side (74) of the insert and the outside of the dividing wall (21); a fourth operative configuration, in which: the second inlet/outlet opening (20) is destined to be set into communication with a line coming from a plumbing and heating system, particularly a heating water return line from a system of heating elements, so as to receive a flow of water to be subjected to filtration; the third inlet/outlet opening (30) is intercepted by a closure element (4); the first inlet/outlet opening (10) is destined to be set into communication with a line directed to a boiler of the plumbing and heating system, so as to send thereto the flow of water following filtration; the flow-directing insert (70) is in said second position for use; via the second side (77) of the insert (70), the flow of fluid incoming to the second opening (20) is conveyed directly through the passage section (73) of the insert and from there to the second portion (9) of the filtration chamber (3) inside the mechanical filter (41), where the fluid is filtered by the magnetic filler (50); the fluid flows, through the mechanical filter (41), out from the second portion (9) of the filtration chamber, and passes into the first portion (8) of the filtration chamber (3), and from there it is conveyed through the first side (74) of the insert (70) on towards the first opening (10), the fluid not being able to pass through the passage section (73) again because of the raised edge (75) of the first side (74) of the insert and the outside of the dividing wall (21).
12. A method for filtering a fluid circulating in a plumbing and heating system, said method comprising the steps of: arranging at least one device (1) for filtering a fluid according to claim 1; identifying a line coming from a plumbing and heating system, particularly a heating water return line from a system of heating elements, carrying a flow of water to be subjected to filtration; identifying a line directed to a boiler of the plumbing and heating system, this line carrying a flow of water that has undergone filtration to the boiler; operating the device (1) selectively in one of said operative configurations.
Description
[0104] Additional features and advantages will become more apparent from the detailed description of some example, but not exclusive, embodiments, including a preferred embodiment, of a device and a method for filtering a fluid circulating in a plumbing and heating system in accordance with the present invention. This description is provided herein below with reference to the attached drawings, which are provided solely for purpose of providing approximate and thus non-limiting examples, and of which:
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[0120] With reference to the above-mentioned figures, the reference number 1 denotes in its entirety a device for filtering a fluid in accordance with the present invention. In general, the same reference number is used for identical or similar elements, possibly in the variant embodiments thereof.
[0121] The device 1 is intended to carry out the filtration of the fluid, typically water, circulating inside a plumbing and heating system, usually comprising pipes and conduits, valves, a boiler or a power generator, pumps, radiant elements (heaters, radiators, floor heating coils, etc.), utilities, etc.
[0122] In the figures the system for which the device is intended is not illustrated or described in a detailed manner, since it is in itself known in the technical field of the present invention.
[0123] The device 1 comprises first of all a body 2, which defines therewithin a filtration chamber 3 intended to have a fluid to be subjected to filtration pass through it. The body 2 is provided with a first inlet/outlet opening 10, a second inlet/outlet opening 20 and a third inlet/outlet opening 30: each one of them sets said filtration chamber 3 in communication with the outside of the device and is configured to be associated with a line of the system so as to receive therefrom, or to send thereto, fluid entering, or exiting from, said body of the device.
[0124] The device 1 is configured to operate a passage of fluid through the filtration chamber 3, from one opening among said first opening 10, second opening 20 and third inlet/outlet opening 30 to another opening among said first opening 10, second opening 20 and third inlet/outlet opening 30. The two openings (among the aforesaid three openings 10, 20 and 30) between which the passage of fluid takes place can be selected as desired, according to a plurality of operative configurations, as will emerge more clearly below.
[0125] The device 1 comprises filtering members 40 that are at least partially housed inside the filtration chamber 3, or associated with the body 2 of the device, and operatively interposed between the three inlet/outlet openings 10, 20 and 30, to carry out filtering of the fluid passing through the filtration chamber 3.
[0126] The device 1 further comprises a flow-directing insert 70 that is housed inside the filtration chamber 3 and configured to channel the fluid passing through the filtration chamber, in each one of the plurality of operative configurations, so that the fluid always passes at least partially through the filtering members 40.
[0127] In particular, the flow-directing insert 70 is configured to operate selectively at least in either: [0128] a first position for use, in which it channels the fluid circulating inside the filtration chamber 3 so as to prevent direct passage of the fluid, without passing through the filtering members 40, from the first opening 10 to the second opening 20 or from the first opening 10 to the third opening 30; [0129] a second position for use, in which it channels the fluid circulating inside the filtration chamber 3 so as to prevent direct passage of the fluid, without passing through the filtering members 40, from the second opening 20 to the first opening 10 or from the third opening 30 to the first opening 10.
[0130] The device preferably comprises a closure element 4 configured to selectively intercept one opening among the aforesaid first opening 10, second opening 20 and third inlet/outlet opening 30.
[0131] According to a preferred embodiment, the plurality of operative configurations comprises: [0132] a first operative configuration, in which the first opening 10 receives a flow of fluid entering the device, the second opening 20 sends the flow of filtered fluid exiting from the device and the third opening is intercepted by the closure element 4; [0133] a second operative configuration, in which the first opening 10 receives a flow of fluid entering the device, the third opening 30 sends the flow of filtered fluid exiting from the device and the second opening 20 is intercepted by the closure element 4; [0134] a third operative configuration, in which the third opening 30 receives a flow of fluid entering the device, the first opening 10 sends the flow of filtered fluid exiting from the device and the second opening 20 is intercepted by the closure element 4; [0135] a fourth operative configuration, in which the second opening 20 receives a flow of fluid entering the device, the first opening 10 sends the flow of filtered fluid exiting from the device and the third opening 30 is intercepted by the closure element 4.
[0136] The closure element 4 is preferably a cap, removably associable with the openings.
[0137] It is evident that in each one of the operative configurations, one of the three openings acts as an inlet, another of the three openings acts as an outlet and the remaining opening is closed off and preferably not used.
[0138] The operative configurations are represented in
[0139] Given the four configurations identified above, the flow-directing insert 70 is configured to be positioned selectively: [0140] in the aforesaid first position for use (
[0142] According to the embodiment shown by way of example in the figures, and in particular in
[0145] The separation portion 78 of the second side 77 is substantially in the place of the raised edge 75 on the first side 74. The separation portion is preferably configured to horizontally convey a flow of fluid coming from the outside of the second side, whereas the raised edge is configured to prevent a passage of flow from the outside of the external wall towards the inside of the insert 70.
[0146] The separation portion 78 is preferably substantially aligned with the passage section 73.
[0147] The insert 70 is preferably structured in such a manner that: [0148] the second side 77 enables the passage of fluid, coming from the outside of the insert 70, through the passage section 73, along a first direction along the central axis 71; [0149] the first side 74 obstructs the passage of fluid, coming from the outside of the insert 70, through the passage section 73, and determines a process of directing it along a second direction along the central axis 71, opposite the first direction.
[0150] In
[0151] The first side 74 and the second side 77 preferably constitute two halves of the insert 70 which face each other and are connected along a dividing plane 79 in which the central axis 71 of the insert lies.
[0152] The insert 70 is preferably made of a single piece. The insert 70 is preferably made of a plastic or metal material.
[0153] The insert 70 is preferably symmetric (or specular) with respect to a plane of symmetry (the plane XI-XI in
[0154] According to the embodiment shown by way of example in the figures, and in particular in
[0155] The body preferably has the conformation of a solid rotating about the longitudinal axis 2A and has a radial symmetry thereabout.
[0156] The first inlet/outlet opening 10 and the third inlet/outlet opening 30 are preferably located on the external lateral surface 6 of the body 2 of the device and on opposite sides with respect to the filtration chamber 3.
[0157] The second inlet/outlet opening 20 is preferably located on the upper surface 5 of the body 2 of the device.
[0158] The first inlet/outlet opening 10, the second inlet/outlet opening 20 and the third inlet/outlet opening 30 preferably have a circular cross section and each one has a respective central axis (the central axes of the openings are indicated in the figures by 10A, 20A and 30A, respectively).
[0159] The central axis 20A of the second inlet/outlet opening 20 preferably coincides with the longitudinal axis 2A of the body 2 of the device.
[0160] All three of the respective central axes 10A, 20A and 30A of the first inlet/outlet opening 10, of the second inlet/outlet opening 20 and of the third inlet/outlet opening 30 preferably intersect (preferably in a same point inside the filtration chamber 3) the longitudinal axis 2A of the body 2 of the device.
[0161] The respective central axes 10A and 30A of the first inlet/outlet opening 10 and of the third inlet/outlet opening 30 are preferably orthogonal to the longitudinal axis 2A of the body 2 of the device.
[0162] The respective central axes 10A and 30A of the first inlet/outlet opening 10 and of the third inlet/outlet opening 30 preferably coincide with each other.
[0163] The body of the device preferably has a central plane of symmetry V-V in which the longitudinal axis 2A lies, said central plane of symmetry dividing the body 2 of the device into two substantially identical halves. The plane V-V is indicated in
[0164] The body of the device is substantially symmetric also with respect to a median plane 2B, in which the longitudinal axis 2A lies and which is orthogonal to the central plane of symmetry V-V.
[0165] All three of the respective central axes 10A, 20A and 30A of the first opening 10, of the second opening 20 and of the third opening 30 preferably lie in the plane of symmetry V-V of the body 2 of the device.
[0166] The central axis 71 of the insert 70 preferably coincides with the longitudinal axis 2A of the body 2 of the device.
[0167] The central axis 71 of the insert 70 preferably coincides with the respective central axis 20A of the second inlet/outlet opening 20.
[0168] According to a preferred embodiment: [0169] in the first position for use (
[0171] The passage of the insert 70 between the first position for use and the second position for use preferably takes place by means of a rotation, preferably of 180, of the insert itself about its own central axis 71 (i.e. with respect to the longitudinal axis 2A of the body 2).
[0172] The flow-directing insert 70 is preferably located inside the filtration chamber 3, in such a manner as to surround the second inlet/outlet opening 20.
[0173] The filtration chamber 3 is preferably delimited laterally by a lateral surface 3A, above by a top surface 3B and below by a bottom surface 3C of the body 2 of the device.
[0174] The second inlet/outlet opening 20 is preferably provided with a dividing wall 21 extending inside the filtration chamber 3 and located between the longitudinal axis 2A of the body 2 and the first inlet/outlet opening 10.
[0175] In other words, the dividing wall 21 extends, inside the filtration chamber 3, entirely in one half of the filtration chamber comprised between the median plane 2B, orthogonal to the central plane of symmetry V-V of the body 2 and in which the longitudinal axis 2A lies, and the first inlet/outlet opening 10. An example embodiment of the dividing wall is shown in
[0176] The dividing wall 21 preferably extends, starting from the second inlet/outlet opening 20, inside the filtration chamber 3 along a direction parallel to the longitudinal axis 2A of the body 2 of the device and substantially to a height coinciding with the dimensions of the first inlet/outlet opening 10 on the external lateral surface 6 of the body 2.
[0177] The dividing wall 21 preferably extends, inside the filtration chamber 3, starting from the top surface 3B delimiting the filtration chamber 3 from above.
[0178] The dividing wall 21 is preferably fixed with respect to the body 2 of the device.
[0179] The dividing wall 21 preferably ends below with a portion for diverting 22 the fluid, which extends towards the longitudinal axis 2A of the body of the device.
[0180] The flow-directing insert 70 is preferably located, inside the filtration chamber 3, in such a manner that its external wall 72 externally surrounds the diverting portion 22 of the dividing wall 21.
[0181] The diverting portion 22 of the dividing wall 21 is preferably complementarily shaped with respect to the partition 76 of the first side 74 of the insert 70.
[0182] Observe
[0185] In other words: [0186] when the insert 70 is selectively set into the first position for use (
[0188] When the insert 70 is selectively set into the first position for use, surface continuity is preferably created between the partition and 76 the diverting portion 22 and it is such as to completely intercept the passage section 73 of the insert.
[0189] The first position for use and the second position for use of the insert 70 are preferably opposite each other with respect to the longitudinal axis 2A of the body 2 of the device.
[0190] Preferably, as shown in the figures, the partition 76 of the insert 70 substantially has the shape of a portion of a spherical crown (or a portion of a spherical shell); it preferably has the shape of a quarter of a spherical crown (or a quarter of a spherical shell).
[0191] Preferably, the diverting portion 22 of the dividing wall 21 substantially has a respective shape of a portion of a spherical crown (or a portion of a spherical shell); it preferably has the shape of a quarter of a spherical crown (or a quarter of a spherical shell).
[0192] Preferably, the partition 76 of the insert 70 substantially has a half cup shape, and has a surface having a given radius of curvature with respect to a centre.
[0193] Preferably, the diverting portion 22 of the dividing wall 21 substantially has a respective half cup shape, and has a surface having a given radius of curvature with respect to a centre.
[0194] The complementary shape of the partition 76 of the insert 70 with respect to the diverting portion 22 of the dividing wall 21 is preferably obtained by means of an appropriate dimensioning of the radii of the spherical crown portion defining the partition 76 and of the radii of the spherical crown portion defining the diverting portion 22.
[0195] The shape of a portion of a spherical crown (or a portion of a spherical shell or half cup) of the partition 76 and of the diverting portion 22 enable the rotation of the insert 70 (movable) with respect to the diverting portion 22 (fixed) and thus the passage of the insert between the first position for use and the second position for use, otherwise impossible due to dimensional interference. The passage of the insert from the first to the second position for use takes place with a rotation of 180, which determines a sliding of the partition 76 under the diverting portion 22 (with the opening of half of the passage section 73); an opposite rotation of 180, whereby the insert passes from the second to the first position for use, brings the partition 76 side by side with the diverting portion 22 so as to form a complete spherical half-shell (or half spherical crown) which completely blocks off the passage section 73.
[0196] It should be observed that the dividing wall 21 and the diverting portion 22 are part of the body of the device, but they are functionally attributable to the second inlet/outlet opening 20.
[0197] The first opening 10, the second opening 20 and the third inlet/outlet opening 30 preferably have the same shape and size; more preferably, they are identical to one another.
[0198] The closure element 4 can preferably be selectively applied on any of the three inlet/outlet openings 10, 20 and 30, so as to determine the closure thereof. The first inlet/outlet opening 10, the second inlet/outlet opening 20 and the third inlet/outlet opening 30 preferably have respective interconnection means configured to fluidly connect the opening with external pipes, fittings or water valves. The interconnection means are preferably configured also to receive the closure element 4. The interconnection means preferably comprise threads or pressure connections or like mechanisms. The interconnection means of the first inlet/outlet opening 10, the second inlet/outlet opening 20 and the third inlet/outlet opening 30 are preferably structurally identical to one another. By way of example, the three inlet/outlet openings 10, 20 and 30 have standard sizes for the plumbing sector, for example a inch, inch, inch or 1 inch diameter.
[0199] Reference will now be made in particular to
[0200] The filtering members 40 preferably comprise a mechanical filter 41 configured to separate substances and solid particles present in the fluid to be treated from the fluid itself in which they are suspended. The mechanical filter 41 has a structure provided with a plurality of passages 42 that have a given filtering section, so that the passage of the fluid from an external side 43 of the structure to an internal side 44 of the structure determines retention, on the external side 43, of the substances and particles present in the fluid and having dimensions greater than the filtering section. In a wholly like manner, the passage of the fluid from the internal side 44 of the structure to the external side 43 of the structure determines retention, on the internal side 44, of the substances and particles present in the fluid and having dimensions greater than the filtering section.
[0201] The structure preferably has a meshwork (or a grid or a mesh or a fabric) or a plurality of micro holes.
[0202] The mechanical filter 41 is preferably made of metal material, preferably stainless steel.
[0203] The mechanical filter 41 preferably has a cylindrical shape extending around a central axis 45 between a first end 46 (upper end in the figures) and a second end 47 (lower end in the figures), and is positioned inside the filtration chamber 3 in such a manner that the central axis 45 coincides with the longitudinal axis 2A of the body 2 of the device.
[0204] At least the first end 46 of the mechanical filter 41 is preferably open.
[0205] The mechanical filter 41 preferably has a radial dimension (or diameter) that is smaller than the respective radial dimension (or respective diameter) of the filtration chamber 3, so as to be distanced from the lateral surface 3A of the chamber and define, inside the chamber 3, a first chamber portion 8 outside the mechanical filter 41 and a second chamber portion 9 inside the mechanical filter 41.
[0206] The mechanical filter 41 is preferably positioned axially between the bottom surface 3C of the body 2 and the flow-directing insert 70.
[0207] The external wall 72 of the insert 70 preferably comprises an upper collar 70A, configured to be positioned so as to abut on the top surface 3B of the filtration chamber 3, and a lower collar 70B, axially opposite the upper collar and configured to house the first end 46 of the mechanical filter 41.
[0208] The bottom surface 3C of the filtration chamber 3 preferably comprises an annular seat 3D configured to house the second end 47 of the mechanical filter 41.
[0209] In this manner, the mechanical filter 41 is axially and removably interposed between the lower collar 70B of the insert 70 and the annular seat 3D of the bottom surface 3C.
[0210] The lower collar 70B preferably has a diameter corresponding to the diameter of the mechanical filter 41. The annular seat 3D preferably has, internally or externally, a diameter corresponding to the diameter of the mechanical filter 41. In this manner, the centring of the mechanical filter 41 with respect to the longitudinal axis and with respect to the insert 70 is guaranteed.
[0211] The mechanical filter 41 is preferably positioned under the insert 70 so as not to be directly facing the three openings 10, 20 and 30.
[0212] The mechanical filter 41 is preferably positioned in the filtration chamber 3 so as to be in fluid communication with the three openings 10, 20 and 30, but under them along the longitudinal axis 2A of the body of the device (in a direction away from the second opening 20, or downwards according to the orientation shown in the figures).
[0213] The insert 70 is preferably in contact, at the bottom thereof, and axially aligned, with the mechanical filter 41.
[0214] The insert 70 is positioned between the top surface 3B and the first end of the mechanical filter; in this manner, the insert, once positioned in the phase of assembly and configuration of the device 1, remains stable throughout the operation of the device. However, the positioning of the insert is reversible, and this makes it possible to move the insert between the first and the second position for use every time there is an intention to modify the configuration of use (among the aforesaid four configurations) or disassemble the device completely for cleaning or maintenance operations.
[0215] As shown in
[0216] This means that the separation portion 78 vertically separates, in all of the operative configurations, the opening from which the entry of the fluid takes place (based on the configuration) from the first portion 8 of the filtration chamber 3, thus forcing the entry of the fluid into the second portion 9 of the filtration chamber.
[0217] In other words, as may be seen in the figures, during the entry of the fluid, the separation portion 78 acts as a wall separating the upper part of the filtration chamber 3, into which the three openings 10, 20 and 30 lead, from the lower part, wherein the first chamber portion 8 outside the mechanical filter is defined.
[0218] It should be noted that, preferably, the first portion 8 of the separation chamber has the form of a hollow cylinder, where the hollow part is represented by the second portion 9 defined and delimited by the mechanical filter 41.
[0219] The filtering members 40 preferably comprise a magnetic filter 50 associated with the body 2 of the device and configured to collect and retain ferrous substances and particles (or in general ones having ferromagnetic properties) that are present in the fluid to be treated, in such a manner as to separate them from the fluid passing through the device.
[0220] The body 2 of the device preferably comprises a hollow protuberance 51 that emerges axially from the bottom surface 3C towards the top surface 3B, said hollow protuberance 51 defining, outside the body of the device, a housing 52 that is elongated in shape, corresponding (negatively) to the hollow protuberance 51 and accessible from the lower surface 7.
[0221] The magnetic filter 50 preferably comprises at least one magnetic element 53, which is configured to generate a permanent magnetic field and is inserted in the housing 52 of the body 2 in such a manner as to act upon the fluid passing through the filtration chamber 3 and retain the ferrous substances and particles present in the fluid on the surface of the hollow protuberance 51 inside the body 2 (in particular inside the chamber). Essentially, the magnetic filter 50 is positioned inside the filtration chamber, even if it is physically in the housing 52 accessible from outside the body 2 without accessing the filtration chamber.
[0222] The magnetic filter 50 preferably comprises a plurality of magnetic elements 53 associated with one another so as to form a rod-shaped magnetic cartridge 54 axially inserted into the housing 52 of the body of the device.
[0223] The body 2 of the device preferably comprises, on the lower surface 7, at the point of access to the housing 52, a cap 55 suitable for closing said at least one magnetic element 53 or said magnetic cartridge 54 inside the housing 52 and for enabling the extraction thereof as needed.
[0224] The hollow protuberance 51 emerging from the bottom surface is preferably entirely contained inside the mechanical filter 41, so that the magnetic filter 50 is positioned inside the second portion 9 of the filtration chamber 3. In this configuration, though the magnetic filter 50 is not in direct contact with the flow, that is, it is not directly touched by the fluid circulating in the filtration chamber, by virtue of its position and its magnetic effect it enables the ferrous particles on the hollow protuberance inside the body to be blocked. The device preferably comprises a removable sheath which wraps the hollow protuberance inside the filtration chamber. The ferrous material filtered out deposits on the sheath and, by removing the mechanical filter and opening the body of the device, it is possible to remove the sheath and clean it of the filtered material.
[0225] In an alternative embodiment, not shown, the magnetic filter can be housed directly inside the filtration chamber.
[0226] The body 2 preferably comprises a first half-body 61 and a second half-body 62, removably associated with each other, wherein: [0227] the assembly of the first half-body 61 with the second half-body 62 defines the filtration chamber 3, inside the body of the device, which is fluid tight towards the outside, with the exception of said first inlet/outlet opening 10, second inlet/outlet opening 20 and third inlet/outlet opening 30; [0228] the disassembly of the first half-body 61 from the second half-body 62 enables access to the filtration chamber 3 and positioning of the flow-directing insert 70.
[0229] Preferably: [0230] the first half-body 61 comprises the first opening 10, the second opening 20, the third inlet/outlet opening 30, the top surface 3B and the dividing wall 21 and houses the flow-directing insert 70; [0231] the second half-body 62 comprises the bottom surface 3C and the hollow protuberance 51.
[0232] The lateral surface 3A of the filtration chamber 3 is preferably defined in part by the first half-body 61 and in part by the second half-body 62.
[0233] The first half-body and the second half-body are preferably interconnected by means of a threaded coupling (not shown, of a known type).
[0234] The body 2 of the device preferably comprises a gasket interposed between the first half-body 61 and the second half-body 62 to ensure the tightness of the filtration chamber 3 in the assembled condition.
[0235] The four operative configurations introduced above are described below with reference to the specific
[0236] The first operative configuration is shown in
[0243] The second operative configuration is shown in
[0250] The third operative configuration is shown in
[0257] The fourth operative configuration is shown in
[0264] Preferably: [0265] in the first operative configuration, in the second operative configuration and in the third operative configuration the device is positioned vertically, i.e. with the longitudinal axis 2A of the body 2 of the device vertically oriented; [0266] in the fourth operative configuration the device is positioned horizontally, i.e. with the longitudinal axis 2A of the body 2 of the device horizontally oriented.
[0267] Observe, in
[0272] Essentially, in the third configuration the path of the fluid is opposite that of the second configuration, whereas in the fourth configuration the path of the fluid is opposite that of the first configuration.
[0273] It should be noted that in all four operative configurations, as represented, the opening that acts as an inlet for the fluid is horizontal, since it is intended to be connected to the return line from the system, which usually comes out of a wall under the boiler. In any case, the first, second and third configurations can also operate horizontally, and the fourth can also operate vertically. In this case it is possible to use suitable couplings, of a known type, to make the water connections between the openings acting as an inlet and outlet of the device and the pipes of the system to which they are to be connected.
[0274] It should be noted, furthermore, that the paths of the fluid inside the device, in the four configurations, are obligatory thanks to the flow-directing insert and thanks to the structure and positioning of the elements inside the filtration chamber.
[0275] In a possible alternative embodiment, not shown, the first inlet/outlet opening 10 and the third inlet/outlet opening 30 are not aligned with each other, that is, the respective central axes 10A and 30A of the first inlet/outlet opening 10 and of the third inlet/outlet opening 30 do not coincide with each other, but are rather offset. This means that the first inlet/outlet opening 10 and the third inlet/outlet opening 30 are positioned, on the external lateral surface 6 of the body 2, at different heights with respect to the second opening 20 along the longitudinal axis. This makes it possible to have two different longitudinal distances, or distances between centres, between the first opening 10 and the second opening 20 and between the third opening 30 and the second opening 20. In this manner it is possible, advantageously, to select which opening to use as an inlet or as an outlet, either the first opening 10 or the third opening 30, simply by rotating the entire body of the device by 180.
[0276] This can be useful based on the position of the return pipe of the system (to which the device inlet is to be connected) and of the pipe leading back into the boiler (to which the device outlet is to be connected), in particular when operating in the fourth configuration. In such a case, for example, based on the distance of the pipe delivering into the boiler from the wall of installation, it may be useful to select either the first or the third inlet opening as the fluid outlet of the device.
[0277] In general, irrespective of the operative configuration selected, the device 1 is usually directly supported by the two lines of the system on which it is installed (or on which the openings acting as inlet and outlet are installed).
[0278] The method for filtering a fluid circulating in a plumbing and heating system according to the present invention corresponds to the operating mode of the device 1. Essentially, the method comprises: [0279] arranging a device 1 according to what has been described; [0280] identifying a line coming from the plumbing and heating system, particularly a heating water return line from a system of heating elements, carrying a flow of water to be subjected to filtration; [0281] identifying a line directed to a boiler of the plumbing and heating system, this line carrying a flow of water that has undergone filtration; [0282] operating the device selectively in one of the aforesaid operative configurations.
[0283] The invention thus conceived is susceptible of numerous modifications and variants, all falling within the scope of the inventive concept, and the components mentioned may be replaced by other technically equivalent elements.
[0284] The invention achieves important advantages. First of all, as emerges clearly from the above description, the invention enables at least some of the drawbacks of the prior art to be overcome.
[0285] The device of the present invention enables an effective filtration of a fluid circulating in a plumbing and heating system, and achieving it in every operative configuration. In particular, irrespective of which opening acts as an inlet and which as an outlet, the filtration of the fluid is always optimal. In fact, as amply explained above and illustrated in
[0286] This allows the device to be adapted to a large number and different types of boilers or other components of a heating system and to be able to be installed even in very limited spaces, while at the same time effectively performing the required filtering operations.
[0287] In short, the device of the present invention is capable of operating with consistent high performances irrespective of the mode of installation inside a plumbing and heating system
[0288] This is made possible, in particular, thanks to the flow-directing insert, which enables the fluid to be directed in such a manner that it always (i.e. in every operative configuration) flows first inside the mechanical filter (where the magnetic filter is also present) and then, after passing through it, outside of it: this makes the filtration always optimal, overcoming the problems of the prior art.
[0289] The path of the fluid in the filtration chamber, always first through the second portion and then through the first one, i.e. always according to an inside-outside scheme with respect to the filtering members, makes it possible to always obtain an effective double filtration.
[0290] The two sides of the flow-directing insert are in fact designed to manage, with a single component, four different configurations: once the inlet opening and the outlet opening have been selected (and the remaining opening has been closed), it is sufficient to position the insert in the first or second position for use (by simply rotating the same) and the device will be ready to operate.
[0291] Furthermore, the device of the present invention is characterised by high operating reliability and a lower predisposition to faults and malfunctions and it can be assembled, disassembled, cleaned and maintained in a simple and rapid manner.
[0292] Finally, the device of the present invention is characterised by a competitive cost and a simple, rational structure.