Drainage body unit, drainage body system and shaft element
12006676 ยท 2024-06-11
Assignee
Inventors
Cpc classification
E03F1/002
FIXED CONSTRUCTIONS
E03B3/03
FIXED CONSTRUCTIONS
Y02A20/108
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
The invention relates to a drainage-body unit having at least one drainage-body element (10), at least one first shaft element (11) and at least one second shaft element (12), wherein a treatment element (13) is located in the first shaft element (1) between a fluid inlet (14), and a fluid outlet (15), a throttle element (16) is located in the second shaft element (12) between a fluid inlet (17) and a fluid outlet (18), and the shaft elements (11, 12) are or can be fluidically connected to one or more drainage-body elements (10).
Claims
1. A drainage-body unit with at least one drainage-body element (10), at least one first shaft element (11), and at least one second shaft element (12), wherein a treatment element (13) is located in the first shaft element (11) between a fluid inlet (14) and a fluid outlet (15), a guide and/or support device (20) for the treatment element (13) is located in the first shaft element (11), the guide and/or support device (20) divides the first shaft element (11) into a treated side and an untreated side, the guide and/or support device (20) comprises a pipe fluid-tightly connected to the fluid inlet (14) of the first shaft element (11) on the untreated side, and has an opening (23) on the treated side, which forms a fluid connection with the fluid outlet (15) of the first shaft element (11), a throttle element (16) is located in the second shaft element (12) between a fluid inlet (17) and a fluid outlet (18), and the shaft elements (11, 12) are fluid-connected or fluid-connectable to one or several drainage-body elements (10).
2. The drainage-body unit according to claim 1, characterized in that the shaft elements (11, 12) and the drainage-body element (10), or several drainage-body elements (10), are integrated in a single, uniformly manageable component.
3. The drainage-body unit according to claim 1 or 2, characterized in that the drainage-body element (10), or several drainage-body elements (10), are located between the shaft elements (11, 12).
4. The drainage-body unit according to claim 1, characterized in that the shaft elements (11, 12) and the drainage-body element (10), or several drainage-body elements (10), are located on a same level.
5. The drainage-body unit according to claim 1, characterized in that the fluid inlet (14) of the first shaft element (11), and the fluid outlet (18) of the second shaft element (12) are located on different levels.
6. The drainage-body unit according to claim 1, characterized in that the fluid inlets (14, 17) and the fluid outlets (15, 18) are each arranged horizontally.
7. The drainage-body unit according to claim 1, characterized in that the fluid connection of the shaft elements (11, 12) to the drainage-body element(s) (10) forms a direct connection through immediately adjacent wall openings.
8. The drainage-body unit according to claim 1, characterized in that the shaft elements (11, 12) are designed as shaft substructures, each having an access opening providing access from above, a closed bottom and closed walls, where the fluid inlets (14, 17) and the fluid outlets (15, 18) are located.
9. The drainage-body unit according to claim 1, characterized in that the shaft elements (11, 12) have shaft structures (19).
10. The drainage-body unit according to claim 1, characterized in that the treatment element (13) has at least means for treating fluid from a slotted-screen group, means for sedimentation, means for adsorption, and means for mechanical pretreatment.
11. The drainage-body unit according to claim 1, characterized in that the throttle element (16) comprises a controlled throttle element, which is connected to a servomotor (21).
12. The drainage-body unit according to claim 11, characterized in that the servomotor (21) is located above the second shaft element (12).
13. The drainage-body unit according to claim 1, characterized in that the throttle element (16) is connected on the outlet side to the fluid outlet (18) of the second shaft element (12) in a fluid-tight manner.
14. The drainage-body unit according to claim 1, characterized in that the throttle element (16) comprises a throttle valve or a throttle with a knife gate valve or a throttle for mechanical pipe formation.
15. A drainage-body system comprising several drainage-body elements and at least one drainage-body unit according to claim 1, which is connected to the drainage-body elements.
16. The drainage-body unit according to claim 1, the throttle element (16) is connected to a servomotor (21) and fluid-tightly connected to the fluid outlet (18).
17. A drainage-body unit with at least one drainage-body element (10), at least one first shaft element (11), and at least one second shaft element (12), wherein a treatment element (13) is located in the first shaft element (11) between a fluid inlet (14) and a fluid outlet (15), a guide and/or support device (20) for the treatment element (13) is located in the first shaft element (11), the guide and/or support device (20) divides the first shaft element (11) into a treated side and an untreated side, and the guide and/or support device (20) has guide or support rails, in which the treatment element (13) is located, a throttle element (16) is located in the second shaft element (12) between a fluid inlet (17) and a fluid outlet (18), and the shaft elements (11, 12) are fluid-connected or fluid-connectable to one or several drainage-body elements (10).
18. The drainage-body unit according to claim 17, the guide and/or support device (20) is fluid-tightly connected to the fluid inlet (14) of the first shaft element (11) on the untreated side, and has an opening (23) on the treated side, which forms a fluid connection with the fluid outlet (15) of the first shaft element (11).
19. The drainage-body unit according to claim 17, the treatment element (13) is a slotted screen.
Description
(1) The Invention is explained in more detail below by means of an embodiment and with reference to the attached schematic drawings.
(2) In the drawings:
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10) The drainage-body system shown in
(11) Drainage-body systems are made up of individual drainage-body elements, which are sealed, e.g., by PE-film sheets, or other means. In use, the drainage-body elements are filled up with a filling material, e.g., gravel.
(12) As shown in
(13) In another embodiment, the drainage-body unit may have several drainage-body elements 10. The drainage-body unit forms an independent component that combines several functions, i.e., a treatment function, a storage function, and a discharge function. To this end, the aforementioned components are interconnected both mechanically and fluidically.
(14) The drainage-body element 10 is arranged between the two shaft elements 11, 12. The two shaft elements 11, 12 and the drainage-body element 10 are located in one and the same level and have a continuous, uniform bottom area. In other words, the two shaft elements 11, 12 and the drainage-body element 10 are located in alignment and form a rectangular block. The drainage-body unit has a fluid inlet 14 in the first shaft element 11 and a fluid outlet 18 in the second shaft element 12 allowing rainwater to flow into and out of the drainage-body unit.
(15) As can be seen in
(16) As can be seen in
(17) The drainage-body element 10 is known to the applicant under the trademark Stormbrixx. Other drainage-body elements may be used.
(18) The two shaft elements 11, 12 are shaft substructures, each with an enclosed base and enclosed walls. The shaft elements 11, 12 each have an access opening for access from above, which is connected to a shaft superstructure 19. The functional elements located in the two shaft elements 11, 12 are mounted by means of the shaft superstructures 19, and are accessible for maintenance. As can be seen in
(19) The second shaft element 12 has the fluid outlet 18 in the form of a pipe, which projects inward through the side wall of the second shaft element 12.
(20) A wall opening is formed on the side of the first shaft element 11 opposite the fluid inlet 14, through which wall opening the first shaft element 11 is in direct fluid communication with the adjacent drainage-body element 10. A wall opening is similarly formed on the side of the first shaft element 12 opposite the fluid inlet 14, through which wall opening the first shaft element 11 is in direct fluid communication with the adjacent drainage-body element 10.
(21) When in use, rainwater enters the first shaft element 11 through the fluid inlet 14, and from there, through the wall opening via the drainage-body element 10 into the second shaft element 12. From there, the rainwater is discharged through the fluid outlet 18.
(22) The structure of the first shaft element 11 is explained in more detail below by means of
(23) The treatment element 13, specifically the slotted screen, is located in a guide and/or folding device 20. The guide and/or folding device 20 divides the first shaft element 11 into a treated side and an untreated side. To this end, the guide and/or support device 20 is designed as a vertical pipe, which is closed at least at the bottom.
(24) Location information such as below, above, to the side etc. refer to the installed condition of the respective elements discussed.
(25) The pipe is located inside the first shaft element 11 and is firmly connected, e.g., welded thereto. Inside the pipe, there are guide and/or support rails (not shown), in which the slotted screen is attached. The slotted screen may be extracted from the rails for maintenance.
(26) As can be seen in
(27) This side forms the treated side. The second shaft element 12 is shown in
(28) The second shaft element 12 has a throttle element 16, which is located in the substructure of the second shaft element 12. The throttle element 16 is directly connected to the fluid outlet 18, specifically to the pipe forming the fluid outlet 18, in a fluid-tight manner. On the side of the second shaft element 12 opposite fluid outlet 18, the fluid inlet 17 of the second shaft element 12 is designed in the shape of a wall opening. When installed, the wall opening directly adjoins the drainage-body element 10, such that a direct fluid connection Is formed between the second shaft element 12 and the drainage-body element 10. When in use, the second shaft element 12 is flooded with treated rainwater through the wall opening. The throttle element 16 discharges rainwater in a controlled way through the fluid outlet 18. The fluid outlet 18 is located in the lower area of the shaft element 12, and extends horizontally in the form of a pipe from the throttle element 16 out of the second shaft element 12.
(29) The throttle element 16 is controlled, in particular remote-controlled, such that dynamic regulation of the rainwater run-off is possible. To this end, the throttle element 16 is connected to a servomotor 21 by means of an adjusting rod 22. The servomotor 21 is located above the second shaft element 12 in shaft structure 19. The throttle element 16 may, e.g., comprise a throttle valve, or a knife gate valve, or means for mechanical pipe formation.
(30) When in use, the drainage-body unit shown in
(31) In summary, a drainage-body unit is proposed, which comprises all the aforementioned components in one component. For this purpose, the treatment unit and the throttle unit are integrated into the drainage body or the drainage-body unit.
(32) For this purpose, the treatment unit and the throttle unit are each Integrated in a shaft, which Is suitable for the drainage-body system. This ensures that the shafts match the drainage-body system functionally, and that the whole drainage-body system may be Installed in one Installation pit. The treatment and throttling unit are located in the lower area (lowest level) of the drainage body.
(33) The treatment unit in the shaft comprises, e.g., a slotted screen or sedimentation, adsorption, and any type of mechanical pretreatment in order to filter the Inflowing water. The slotted screen may be Inserted in a shaft (guide cylinder) mounted in the shaft, and hence is easy to maintain, as it can be simply pulled out and upward, when contaminated. Depending on the height of the drainage body or the drainage-body unit, a corresponding slide extension may be formed between the slotted screen and the surface of the drainage body. The inflowing water Is guided through the inlet pipe directly Into the guide cylinder to the slotted screen, and then passes, as treated, through the slotted screen into the drainage body. A gap Is provided between the bottom of the shaft body and the slotted screen. The sewage settling chamber in the guide cylinder in front of the slotted screen should be maintained at regular Intervals depending on its capacity. Opposite the outlet side of the slotted screen, there is an opening in the guide cylinder, such that the water from the slotted screen may flow into the drainage body. The size of the opening of the guide cylinder is chosen, such that the water may flow unimpeded into the drain without unnecessary flow resistance. The slotted screen Is arranged vertically, and is connected to the guide cylinder via guide rails located on either side. The guide cylinder may be supported on shaft-body ribs and, e.g., be permanently welded thereto.
(34) The throttle unit may have a throttle valve/flanged valve in Its Interior, which may be used to control the outflowing water.
REFERENCE NUMERAL LIST
(35) 10 Drainage-body element 11 First shaft element 12 Second shaft element 13 Treatment element 14 Fluid inlet of the first shaft element 15 Fluid outlet of the first shaft element 16 Throttle element 17 Fluid inlet of the second shaft element 18 Fluid outlet of the second shaft element 19 Shaft structure 20 Guide or folding device 21 Servomotor 22 Adjusting rod 23 Opening