HEIGHT ADJUSTABLE METER/DEVICE PIT
20190194900 ยท 2019-06-27
Inventors
Cpc classification
E03B7/095
FIXED CONSTRUCTIONS
E02D29/121
FIXED CONSTRUCTIONS
E02D29/14
FIXED CONSTRUCTIONS
International classification
E02D29/12
FIXED CONSTRUCTIONS
Abstract
A height adjustable device pit (10) is provided for use in installing water meters (12) or other equipment below ground level. The device pit (10) includes a lower housing section (14), an upper housing section (16), and a lid (18). The lower housing section (14) and the upper housing section (16) are engaged with each other by mating screw threads (20) and (22) that are centered on a vertical, longitudinal axis (24). The housing sections (14,16) are movable relative to each other along the longitudinal axis (24) to adjust the vertical height of the device pit (10) in response to relative rotation of the housing sections (14) and (16) about the longitudinal axis (24).
Claims
1. A height adjustable meter pit for use in installing a water meter below ground level, the meter pit comprising: a lower housing section and an upper housing section engaged with each other by mating screw threads that are centered on a longitudinal axis, the housing sections moveable relative to each other along the longitudinal axis for height adjustment of the meter pit in response to relative rotation of the housing section about the longitudinal axis, the lower housing section defining a chamber for receiving at least one water meter and including a pair of openings, each opening sized to allow a water line located outside of the chamber to be connected to a water meter received in the chamber, and the upper housing defining an access passage to allow a worker to access the chamber in the lower housing.
2. The adjustable meter pit of claim 1 wherein the mating screw threads comprise an external screw thread on an outermost surface of one of the housing sections and an internal screw thread on the other of the housing sections.
3. The adjustable meter pit of claim 2 wherein the external screw thread is on the lower housing section and the internal screw thread is on the upper housing section.
4. The adjustable meter pit of claim 3 wherein the upper housing section has a height H.sub.U parallel to the longitudinal axis and the internal screw thread extends over a majority of the height H.sub.U, and the lower housing section has a height H.sub.L parallel to the longitudinal axis and the external screw thread extends over a minority of the height H.sub.L.
5. The adjustable meter pit of claim of claim 3 wherein the lower housing section comprises a cylindrical housing component and an external screw thread component mounted on an exterior surface of the cylindrical housing component, the external screw thread component defining the external screw thread.
6. The adjustable meter pit of claim 3 wherein at least one of the upper housing section and the lower housing section is a one-piece, unitary component.
7. The adjustable meter pit of claim 3 wherein the internal screw thread defines at least a portion of the access passage.
8. The adjustable meter pit of claim 3 wherein a portion of the upper housing section is defined by a cylindrical wall having an inwardly facing cylindrical surface defining at least a portion of the access passage.
9. The adjustable meter pit of claim 8 wherein the internal thread is defined in a portion of the upper housing section located below the cylindrical wall.
10. The adjustable meter pit of claim 1 wherein the access passage includes an upwardly facing access opening in the upper housing section.
11. The adjustable meter pit of claim 7 further comprising a lid removably received in the access opening.
12. The adjustable meter pit of claim 1 wherein each of the openings of the pair of openings is a circular hole in an exterior wall of the lower housing.
13. A device pit retrofit kit for use in retrofitting an existing device pit to provide a height adjustable device pit, the retrofit kit comprising: a tubular-shaped retrofit component configured to be mounted on an existing meter pit, the retrofit component having a radially inwardly facing, cylindrical-shaped mount surface centered on a longitudinal axis, and an external screw thread centered on the longitudinal axis, the mount surface sized to closely conform to an external surface of the existing device pit; and an upper housing section having an internal screw thread configured for threaded engagement with the external screw thread to provide relative movement between the upper housing section and the retrofit component along the longitudinal axis in response to the upper housing section being rotated relative to the retrofit component, the upper housing defining an access passage to allow a worker to access the existing device pit after the retrofit kit is installed on the existing device pit.
14. The device pit retrofit kit of claim 13 wherein the retrofit component includes an annular shoulder extending radially inwardly from the mount surface for engagement with an upwardly facing annular surface on the existing device pit.
15. The device pit retrofit kit of claim 13 wherein the upper housing section has a height H.sub.U parallel to the longitudinal axis and the internal screw thread extends over a majority of the height H.sub.U.
16. The device pit retrofit kit of claim 13 wherein the internal screw thread defines at least a portion of the access passage.
17. The device pit retrofit kit of claim 13 wherein a portion of the upper housing section is defined by a cylindrical wall having an inwardly facing cylindrical surface defining at least a portion of the access passage.
18. The device pit retrofit kit of claim 17 wherein the internal thread is defined in a portion of the upper housing section located below the cylindrical wall.
19. The device pit retrofit kit of claim 13 wherein the access passage includes an upwardly facing access opening in the upper housing.
20. The device pit retrofit kit of claim 13 further comprising a lid removably received in the access opening.
21. A height adjustable device pit for use in installing equipment below ground level, the device pit comprising: a lower housing section and an upper housing section engaged with each other by mating screw threads that are centered on a longitudinal axis, the housing sections moveable relative to each other along the longitudinal axis for height adjustment of the device pit in response to relative rotation of the housing section about the longitudinal axis, the lower housing section defining a chamber for receiving at least one device and including at least one opening sized to allow a service line located outside of the chamber to be connected to the at least one device received in the chamber, and the upper housing defining an access passage to allow a worker to access the chamber in the lower housing.
22. The adjustable device pit of claim 21 wherein the mating screw threads comprise an external screw thread on the lower housing section and an internal screw thread on the upper housing section.
23. The adjustable device pit of claim 22 wherein the upper housing section has a height H.sub.U parallel to the longitudinal axis and the internal screw thread extends over a majority of the height H.sub.U, and the lower housing section has a height H.sub.L parallel to the longitudinal axis and the external screw thread extends over a minority of the height H.sub.L.
24. The adjustable device pit of claim of claim 22 wherein the lower housing section comprises a cylindrical housing component and an external screw thread component mounted on an exterior surface of the cylindrical housing component, the external screw thread component defining the external screw thread.
25. The adjustable device pit of claim 22 wherein at least one of the upper housing section and the lower housing section is a one-piece, unitary component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0036] A height adjustable device pit is show in
[0037] The lower housing section 14 defines a chamber 26 for receiving the water meter 12 and includes a pair of openings 30 sized to allow a water service line 32 located outside of the chamber 26 to be connected to the water meter 12. In this regard, one of the openings 30 receives a water inlet 34, and the other opening 30 receives a water outlet 36. In the illustrated embodiment, the openings 30 are provided in the form of circular holes in the exterior wall of the lower housing. The upper housing section 16 defines an access passage 40 to allow a worker to access the chamber 26 in the lower housing 14. The access passage 40 includes an upwardly facing access opening 42 that can be selectively closed or opened by the lid 18.
[0038] In the illustrated embodiment, the mating screw threads 20 and 22 are provided in the form of an external screw thread 20 on an outermost surface 43 of the lower housing section 14, and an internal screw thread 22 formed on the upper housing section 16. In the illustrated embodiment, the lower housing section 14 is shown as being a two piece construction that includes a cylindrical housing component or pipe 44 and an external screw thread component 46 that is mounted on an exterior cylindrical surface 48 of the pipe 44. The surface 48 is centered on the longitudinal axis 24. The inlet and outlet openings 30 are located in the pipe 44 and the external screw thread 20 is defined on the external screw thread component 44. The external screw thread component 46 includes a radially inwardly facing cylindrical-shaped mount surface 50 that is centered on the longitudinal axis 24 and sized to closely conform to the exterior surface 48 of the pipe 44 so that the screw thread component 46 can be mounted to the exterior surface 48 of the pipe 44. In the illustrated embodiment, the external screw thread component 46 includes a downwardly facing annular shoulder 52 extending radially inwardly from the mount surface 50 for engagement with an upwardly facing annular surface 54 on the pipe 44 to improve the structural integrity of the mount connection between the component 46 and the pipe 44. In the illustrated embodiment, the component 46 is preferably molded from a suitable material, such as a suitable polymer or composite material.
[0039] In the illustrated embodiment, the upper housing section 16 is a one piece, unitary component, that is preferably molded from a suitable material, such as a suitable composite or polymer material. A portion of the upper housing section 16 is defined by a cylindrical wall 56 having an inwardly facing cylindrical surface 58 that defines a portion of the access passage 40, with a remainder of the access passage 40 being defined by the internal screw thread 22 in the illustrated embodiment. The internal screw thread 22 is defined in a portion of the upper housing section 16 that is located below the cylindrical wall 56. As best seen in
[0040] In the illustrated embodiment, the upper housing section 16 has a height H.sub.U parallel to the longitudinal axis 24 and the internal screw threads 22 extend over a majority of the height H.sub.U. The lower housing section 14 has a height H.sub.L parallel to the longitudinal axis 24 and the external screw thread 20 extends over a minority of the height H.sub.L. The external screw thread component 46 has a height H.sub.U and the external thread 20 extends over a majority of the height H.sub.U.
[0041] It should be understood that the upper housing section 16, the lid 18, and the external screw thread component 46 can be provided as a retrofit kit 62, with the external screw thread component 46 serving as a retrofit component 46 that can be mounted to an existing meter pit when the existing meter pit has an upper portion with a cylindrical exterior surface of a compatible size. For purposes of the retrofit kit 62, the existing meter pit stands in place of the tube 44.
[0042] As best seen in
[0043] It should be understood that the disclosed meter pit 10 can be compatible with any type of water meter and meters other than water meters. Furthermore, it should be understood that the disclosed meter pit 10 can be compatible with any mounting or connection configuration commonly employed with meters. In this regard,
[0044] The two options discussed above are intended to be illustrative of the many possible uses of the disclosed device pit 10. For example, the device pit 10 could be utilized to allow access and/or installation for two meters that are mounted in tandem, with one inlet split between two outlets. As another example, the disclosed device pit 10 can be utilized to provide access to any device that may be mounted below ground level, including, for example, other types of meters, pumps, pump controls, and valves, and devices associated with electrical power service and/or communications service.
[0045] It should be understood that while preferred forms of the device pit 10 have been shown and described herein, this disclosure contemplates other forms for the device pit 10. For example, while is it preferred that the upper housing section 16 and the external screw thread component 46 be formed by molding, in some applications it may be desirable for these components to be formed by other suitable manufacturing techniques and/or out of other suitable materials. As a further example, while in the illustrated embodiment the upper housing 16 is shown as including the cylindrical wall 56, in some applications it may be desirable for the internal screw thread 22 to extend from the top of the upper housing section 16 to the bottom of the upper housing section 16, with the entirety of the access passage 40 being defined by the internal screw threads 22. As a further example, while in the illustrated embodiment of