Geothermal heat exchange system for water supply
Abstract
The geothermal heat exchange system for a water supply is an open system, i.e., water flows into the system for consumption and use and is then drained from the system, as opposed to a closed system where the water is recycled through the system. The present system receives water from an elevated source, e.g., a hilltop tank or an elevated community water supply tank, through a relatively large diameter pipe. The water is then delivered to a subsurface pipe system of one or more relatively small diameter pipes for more efficient thermal exchange. The subsurface pipes are preferably manufactured of material having relatively high thermal conductivity. The subsurface pipe system is preferably buried at an intermediate depth between the surface and the depth where constant temperature occurs in order to provide most of the benefits of a subsurface system while reducing the labor required to bury the pipe system.
Claims
exact text as granted — not AI-modified1 . A geothermal heat exchange system for a water supply, comprising:
an elevated water supply providing a pressure head; a large diameter water supply pipe extending downward from the elevated water supply; at least one subsurface water pipe disposed below the level of the large diameter water supply pipe, the subsurface water pipe communicating fluidly with the large diameter water supply pipe, the subsurface water pipe being formed of a highly thermally conductive material; wherein the subsurface water pipe is buried at a substantial depth below ground level such that there is a significant difference in ambient temperature from the ground level, and said highly thermally conductive material allowing heat transfer from the surrounding subsurface having a significant ambient temperature from the ground level; a dispensing fixture water supply pipe communicating fluidly with the at least one subsurface water pipe, the dispensing fixture water supply pipe extending upwardly from the subsurface water pipe to a point above ground level and below the elevated water supply; a dispensing fixture disposed above ground level, the dispensing fixture selectively receiving water from the dispensing fixture water supply pipe; and a wastewater drain extending from the dispensing fixture.
2 . The geothermal heat exchange system for a water supply according to claim 1 , wherein:
the subsurface water pipe has a smaller diameter than the large diameter water supply pipe; and the dispensing fixture water pipe has a smaller diameter than the large diameter water supply pipe.
3 . (canceled)
4 . The geothermal heat exchange system for a water supply according to claim 1 , wherein the at least one subsurface water pipe comprises a plurality of small diameter parallel pipes.
5 . The geothermal heat exchange system for a water supply according to claim 1 , wherein the at least one subsurface water pipe comprises a single small diameter pipe having a sinusoidal path.
6 . The geothermal heat exchange system for a water supply according to claim 1 , wherein the large diameter water supply pipe has a diameter of about two and two-thirds the diameter of the subsurface water pipe.
7 . The geothermal heat exchange system for a water supply according to claim 1 , wherein the dispensing fixture is a washbasin.
8 . A geothermal heat exchange system for a water supply, comprising:
an elevated water supply providing a pressure head; a large diameter water supply pipe extending downward from the elevated water supply; at least one subsurface water pipe disposed below the level of the large diameter water supply pipe, the subsurface water pipe communicating fluidly with the large diameter water supply pipe, the subsurface water pipe having a smaller diameter than the large diameter water supply pipe; wherein the subsurface water pipe is formed of a highly thermally conductive material, and is buried at a depth below ground level such that there is a significant difference in ambient temperature from the ground level; a dispensing fixture water supply pipe communicating fluidly with the at least one subsurface water pipe, the dispensing fixture water supply pipe extending upward from the subsurface water pipe to a point above ground level and below the elevated water supply, the dispensing fixture water pipe having a smaller diameter than the large diameter water supply pipe; a dispensing fixture disposed above ground level, the dispensing fixture selectively receiving water from the dispensing fixture water supply pipe; and a wastewater drain extending from the dispensing fixture; wherein the dispensing fixture is a washbasin.
9 - 10 . (canceled)
11 . The geothermal heat exchange system for a water supply according to claim 8 , wherein the at least one subsurface water pipe comprises a plurality of small diameter parallel pipes.
12 . The geothermal heat exchange system for a water supply according to claim 8 , wherein the at least one subsurface water pipe comprises a single small diameter pipe having a sinusoidal path.
13 . The geothermal heat exchange system for a water supply according to claim 8 , wherein the large diameter water supply pipe has a diameter of about two and two-thirds the diameter of the subsurface water pipe.
14 . (canceled)
15 . A geothermal heat exchange system for a water supply, comprising:
an elevated water supply providing a pressure head; a large diameter water supply pipe extending downward from the elevated water supply; at least one subsurface water pipe disposed below the level of the large diameter water supply pipe, the subsurface water pipe communicating fluidly with the large diameter water supply pipe, the subsurface water pipe being buried at a substantial depth below ground level such that there is a significant difference in ambient temperature from the ground level; wherein the subsurface water pipe has a smaller diameter than the lame diameter water supply pipe, such that the large diameter water supply pipe has a diameter of about two and two-thirds the diameter of the subsurface water pipe; a dispensing fixture water supply pipe communicating fluidly with the at least one subsurface water pipe, the dispensing fixture water supply pipe extending upward from the subsurface water pipe to a point above the ground surface and below the elevated water supply; the dispensing fixture water pipe has a smaller diameter than the large diameter water supply pipe; a dispensing fixture disposed above the ground surface, the dispensing fixture selectively receiving water from the dispensing fixture water supply pipe; and a wastewater drain extending from the dispensing fixture.
16 . The geothermal heat exchange system for a water supply according to claim 15 , wherein the subsurface water pipe is formed of a highly thermally conductive material.
17 . (canceled)
18 . The geothermal heat exchange system for a water supply according to claim 15 , wherein the at least one subsurface water pipe comprises a plurality of small diameter parallel pipes.
19 . The geothermal heat exchange system for a water supply according to claim 15 , wherein the at least one subsurface water pipe comprises a single small diameter pipe having a sinusoidal path.
20 . (canceled)Join the waitlist — get patent alerts
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