HEAT EXCHANGER FOR DISCHARGE CONTAINERS OF SOLENOID VALVES OF MACHINES FOR COFFEE DISPENSING, RELATIVE DISCHARGE CONTAINER EQUIPPED WITH SUCH HEAT EXCHANGER AND MACHINE FOR COFFEE DISPENSING PROVIDED WITH SUCH DISCHARGE CONTAINER AND SUCH HEAT EXCHANGER
20210022546 ยท 2021-01-28
Assignee
Inventors
Cpc classification
A47J31/54
HUMAN NECESSITIES
A47J31/007
HUMAN NECESSITIES
A47J31/56
HUMAN NECESSITIES
International classification
A47J31/46
HUMAN NECESSITIES
A47J31/44
HUMAN NECESSITIES
Abstract
A heat exchanger includes a body placed inside a discharge container of a solenoid valve of a machine for coffee dispensing. The body includes: a first portion presenting a collection cavity of a hot waste fluid coming from the solenoid valve of the machine and defining a first surface arranged to come into contact with the hot waste fluid and a second surface facing the opposite side from the first surface; and a second portion presenting a primary surface in contact with the second surface of the first portion and a secondary surface opposed to the primary surface, arranged to come into contact with a heat exchange fluid of the machine having a different temperature from the temperature of the hot waste fluid. The first and second portions allow heat exchange, by conduction, between the hot waste fluid and the heat exchange fluid of the machine.
Claims
1. A heat exchanger for discharge containers of solenoid valves of machines for coffee dispensing, the heat exchanger comprising a body which can be placed inside a discharge container of at least one solenoid valve of a machine for coffee dispensing, the body comprising: a first portion externally presenting a collection cavity of a hot waste fluid coming from the solenoid valve of the machine for coffee dispensing, the collection cavity defining a first surface of the first portion, arranged to come into contact with the hot waste fluid of the solenoid valve and a second surface facing the opposite side from the first surface; and a second portion presenting a primary surface in contact with the second surface of the first portion and a secondary surface opposed to the primary surface, the secondary surface of the second portion of the body being arranged to come into contact with a heat exchange fluid of the machine for coffee dispensing having a different temperature from the temperature of the hot waste fluid of the solenoid valve of the machine, the first and second portion of the body of the heat exchanger allowing an exchange of heat, by conduction, between the hot waste fluid of the solenoid valve in contact with the first surface of the first portion of the body and the heat exchange fluid of the machine for coffee dispensing in contact with the secondary surface of the second portion of the body of the heat exchanger.
2. The heat exchanger according to claim 1, wherein the second portion of the body of the heat exchanger comprises a transit duct of the heat exchange fluid of the machine for coffee dispensing, the transit duct presenting: a supply fitting of the heat exchange fluid coming from the machine for coffee dispensing which develops outside the first portion of the body of the heat exchanger; an outlet fitting of the heat exchange fluid directed towards the machine for coffee dispensing which develops outside the first portion of the body of the heat exchanger, preferably substantially parallel to the supply fitting; and at least one transit segment developing inside the first portion of the body of the heat exchanger, preferably in correspondence of the first surface of the latter, the transit segment being in fluid communication with the supply fitting and the outlet fitting.
3. The heat exchanger according to claim 2, wherein: the primary surface of the second portion of the body of the heat exchanger is defined by the outer surface of the transit duct of the heat exchange fluid at least in correspondence of the transit segment; the secondary surface of the second portion of the body of the heat exchanger is defined by the internal surface of the transit duct of the heat exchange fluid at least in correspondence of the transit segment; and the second surface of the first portion of the body of the heat exchanger is defined by the surface of the first portion in direct contact with the outer surface of the transit duct of the heat exchange fluid at least in correspondence of the transit segment.
4. The heat exchanger according to claim 2, wherein the transit segment of the transit duct defining the second portion of the body of the heat exchanger develops inside of the first portion of the body of the latter according to a substantially C-shaped path.
5. The heat exchanger according to claim 2, wherein the first portion of the body of the heat exchanger presents at least one auxiliary heat exchange area provided with a plurality of fins for heat exchange.
6. The heat exchanger according to claim 5, wherein the auxiliary exchange area is arranged on a third surface of the first portion of the body of the heat exchanger facing the opposite side with respect to the first surface and outwards, the second portion of the body of the heat exchanger and the second surface of the first portion of the same body being interposed between the first and the third surface of the first portion.
7. The heat exchanger according to claim 2, wherein the first portion of the body of the heat exchanger presents a substantially flattened external and/or overall conformation.
8. The heat exchanger according to claim 2, wherein the first portion of the body of the heat exchanger presents a substantially trapezoidal shape, preferably narrowing as it approaches the supply and outlet fittings of the transit duct.
9. The heat exchanger according to claim 2, wherein the supply fitting and the outlet fitting of the transit duct of the heat exchange fluid of the machine for coffee dispensing each develops transversely, preferably perpendicularly to a prevailing development plane of the first portion of the body of the heat exchanger.
10. The heat exchanger according to claim 1, wherein the first portion of the body of the heat exchanger presents an overall size of less than the dimensions of a housing compartment of the discharge container of the solenoid valve of the machine for coffee dispensing.
11. A discharge container for solenoid valves of machines for coffee dispensing, the discharge container comprising: a structure defining at least one housing compartment for collecting a hot waste fluid coming from at least one solenoid valve of a machine for coffee dispensing; at least one inlet connectable to a solenoid valve of a machine for coffee dispensing to allow the passage of the relative hot waste fluid towards the housing compartment of the structure; at least one outlet to allow the outflow of the hot waste fluid accumulated inside the housing compartment of the discharge container; and at least one heat exchanger according to claim 1.
12. The discharge container according to claim 11, wherein the heat exchanger has the collection cavity of the hot waste fluid coming from the respective solenoid valve of the machine for coffee dispensing and, consequently, the first surface of the first portion of the relative body arranged below the inlet of the hot waste fluid.
13. The discharge container according to claim 12, wherein the body of the heat exchanger is interposed between the inlet of the hot waste fluid of the solenoid valve of the machine for coffee dispensing and outflow outlet.
14. A machine for coffee dispensing of the type comprising: at least one general supply valve connectable to a water network or a similar water supply source arranged in series with a feed pump; at least one indirect heating boiler of the water and at least one direct heating boiler of the water operatively arranged between the general valve and at least one solenoid valve for dispensing the coffee; a hydraulic circuit developing between the general supply valve, the boilers and the solenoid valve for dispensing coffee; and at least one discharge container according to claim 11, in fluid communication with the solenoid valve through at least one exhaust duct of the hydraulic circuit.
Description
[0019] Such description will be made herein below with reference to the accompanying drawings, provided for indicative only and therefore not limiting purpose, in which:
[0020]
[0021]
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[0023]
[0024]
[0025]
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[0027]
[0028]
[0029] With reference to the accompanying figures, the number 1 indicates overall a heat exchanger, in particular with indirect contact, preferably on the surface, for discharge containers 300 of solenoid valves 200 of machines 100 for dispensing coffee.
[0030] As can be seen in
[0031] The body 2 comprises a first portion 3 externally presenting a collection cavity 4 of a hot waste fluid F1 coming from at least one solenoid valve 200 of the machine 100 for coffee dispensing.
[0032] In detail, the collection cavity 4 defines a first surface 3a of the first portion 3, arranged to come into contact with the hot waste fluid F1 (
[0033] The heat exchanger 1 further comprises a second portion (
[0034] The secondary surface 5b of the second portion 5 of the body 2 is arranged to come into contact with a heat exchange fluid F2 of the machine 100 for coffee dispensing having a temperature different from the temperature of the hot discharge fluid F1 of the solenoid valve 200.
[0035] By means of the surfaces 3a, 3b, 5a, 5b respectively of the first portion 3 and of the second portion 5 of the body 2 of the heat exchanger 1, the first and the second portion 3, 5 of the body 2 allow and ensure an exchange of heat, by conduction, between the hot discharge fluid F1, coming from at least one solenoid valve 200 of the machine 100, in contact with the first surface 3a of the first portion 3 of the body 2 and the heat exchange fluid F2 of the machine 100 in contact with the secondary surface 5b of the second portion 5 of the body 2.
[0036] Going more and more into detail, as can be seen in
[0037] The transit conduit 6 has at least one supply fitting 6a of the heat exchange fluid F2 coming from the machine 100 for coffee dispensing which develops outside the first portion 5 of the body 2 of the heat exchanger 1.
[0038] Advantageously, the supply fitting 6a of the transit conduit 6 can be connected to a water supply duct coming from the water network or from a similar source of water supply.
[0039] The transit conduit 6 also has at least one outlet fitting 6b of the heat exchange fluid F2 which must reach the machine 100 for coffee dispensing. Similarly to the supply fitting 6a of the duct 6, the outlet fitting 6b also develops outside the first portion 5 of the body 2 of the heat exchanger 1, preferably substantially parallel to the supply fitting 6a.
[0040] The supply fitting 6a and the outlet fitting 6b of the transit duct 6 of the heat exchange fluid F2 of the machine 100 for coffee dispensing each develops transversely, preferably perpendicularly, to a prevailing development plane of the first portion 5 of the body 2 of the heat exchanger 1.
[0041] With reference to
[0042] As can be seen in
[0043] With reference to
[0044] The secondary surface 5b of the second portion 5 of the body 2 of the heat exchanger 1 is defined by the internal surface of the transit duct 6 of the heat exchange fluid F2 at least in correspondence of the transit segment 6c.
[0045] Still with reference to
[0046] Advantageously, the second surface 3b of the first portion 3 of the body 2 of the heat exchanger 1 is at least in part, preferably completely, counter-shaped to the primary surface 5a of the second portion 5, i.e. to the outer surface of the transit segment 6c of the transit duct 6.
[0047] As can be seen in
[0048] Still with reference to
[0049] As can be seen in
[0050] In order to allow an easy and smooth insertion of the heat exchanger 1 into the discharge container 300 of the solenoid valve 200 of the machine 100 for coffee dispensing, the first portion 3 of the body 2 of the heat exchanger 1 presents a substantially flattened external and/or overall conformation (
[0051] The first portion 3 of the body 2 of the heat exchanger 1 also presents a substantially trapezoidal shape.
[0052] Preferably, the shape of the first portion 3 of the body 2 of the heat exchanger 1 narrows as it approaches the supply 6a and outlet 6b fittings of the transit duct 6.
[0053] Furthermore, the subject matter of the present invention is also a discharge container 300 (
[0054] As can be seen in
[0055] The bottom 301a and the side walls 301b together define a housing compartment 302 for collecting a hot waste fluid F1 coming from at least one solenoid valve 200 of the machine 100 for coffee dispensing.
[0056] Still with reference to
[0057] In accordance with the embodiment illustrated in
[0058] As can be seen in
[0059] The discharge container 300 also includes at least one outflow outlet 306 to allow the outflow of the hot waste fluid F1 accumulated inside the housing compartment 302 towards the final discharge 101 of the machine 100.
[0060] As can be seen in
[0061] In other words, the body 2 of the heat exchanger 1 is interposed between the inlets 303 of the hot waste fluid F1 coming from the solenoid valves 200 of the machine 100 for coffee dispensing and the outflow outlet 306 of the discharge container 300.
[0062] In this way, at the end of each coffee extraction operation, the excess hot waste fluid F1 is sent to the discharge container 300 entering the housing compartment 302 of the latter through the respective inlet 303 and the corresponding deflection chamber 304.
[0063] Each deflection chamber 304 directs the respective flow of fluid F1 at the inlet towards the collection cavity 4 of the heat exchanger 1 by heating the first portion 3 of the latter and, consequently, the transit segment 6c of the duct 6 of the second portion 5. The passage of the heat exchange fluid F2 along the transit segment 6c of the transit duct 6, which is indirectly heated by the hot waste fluid F1 through the first portion 3 of the body 2 of the heat exchanger 1, consequently heats the heat exchange fluid F2 which is sent to the machine 100 through the outlet fitting 6b in order to be reused by it.
[0064] As can be seen in the schematic representation of
[0069] Advantageously, as can be seen in the diagram of
[0070] Still with reference to
[0071] The heated water at the outlet from the heat exchanger 1 through the respective outlet fitting 6b can be sent to one of the boilers 105, 106 according to the needs, so as to feed them with already preheated water and thus reducing the energy overall required to maintain the operating temperatures of the relative machine 100.
[0072] Similarly, also the hot waste water accumulated in the housing compartment 302 of the discharge container 300 can be sent to one of the boilers 105, 106 or discharged through the final discharge 101 of the machine 100 for coffee dispensing.
[0073] The heat exchanger 1, the discharge container 300 provided with said heat exchanger 1, as well as the machine 100 for coffee dispensing provided with such discharge container 300 and the relative heat exchanger 1 described above solve the problems encountered in the prior art and achieve important advantages.
[0074] First of all, the preheating actuated by the heat exchanger on the supply water coming from the water network or from a similar source allows a significant reduction of the overall heat losses of the machines, as it permits exploiting the heat of the excess water from the coffee extractions.
[0075] Naturally, the preheating of the supply water allows an increase in the performance of the machines which must use less time and energy to reach operating temperatures.
[0076] It should also be considered that the powers of the internal components of the machines on which the heat exchangers are installed according to the present invention are thus optimized.
[0077] Finally, it should be highlighted that the preheating of the water supplied by heat exchangers such as the one described above allows a significant reduction in the energy consumption of the machines for coffee dispensing.