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Geothermal Exchange Module and a Method of use with an Augmented Water Temperature System

a technology of geothermal exchange module and augmented water temperature system, which is applied in the direction of heat pumps, heating types, domestic cooling apparatus, etc., can solve the problems of reducing the efficiency of heat pumps with descending outside air temperature, and achieve efficient ground to water heat transfer, improved efficiency, and improved efficiency.

Inactive Publication Date: 2011-12-22
KRIMSKY LEONARD C
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Benefits of technology

[0029]The present invention is a thermal exchange process to deliver water, in a closed loop ground / water system at temperatures approaching that of ground water. Such water temperatures were heretofore only achievable with ground water systems. Optimum energy saving and performance of ground coupled heat pumps are directly linked to heat exchange between a circulating water loop and ground temperature. The present invention allows for the optimization of energy and performance. Also provided by the present invention is an improved ground to water heat exchanger for geothermal heating and cooling. The ground to water heat exchanger is a sealed cylinder that is located substantially below the earth's surface surrounded by earth mass. Within the cylinder's thin outside wall is an annular column of saturated sand. During operation, circulating water from the user's heat pump flows from the top of the cylinder column through the saturated sand medium in a U-configuration at the desired pump rate. The slow passage of water, coaxial with the thin stainless steel cylinder wall together with the special conductivity characteristics of saturated sand assures efficient ground to water heat transfer. The improved heat transfer results in greater operating efficiencies for geothermal heating and cooling. In cooling dominant climates, the entry water is not manipulated with an augmented booster. The efficiency of heat pumps diminishes with descending outside air temperatures. This invention allows for the manipulation of entry water temperatures to stem the problem of diminishing efficiencies. However, the augmented booster system is optional and only serves to boost the heating performance of the heat pump. In the circumstance that the present invention is used in a colder climate and anti-freeze is not being used, the augmented booster is required to prevent the freezing of the water within the piping. The secondary benefit of the present invention is the potential reduction of the size of the geothermal field.

Problems solved by technology

The efficiency of heat pumps diminishes with descending outside air temperatures.
However, the augmented booster system is optional and only serves to boost the heating performance of the heat pump.

Method used

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  • Geothermal Exchange Module and a Method of use with an Augmented Water Temperature System
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  • Geothermal Exchange Module and a Method of use with an Augmented Water Temperature System

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Embodiment Construction

[0035]All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.

[0036]It has been established that geothermal systems are most efficient when ground coupled heat transfer takes place at depths of 12 to 40 ft. or more and when exit water temperature most closely approximates ground temperature. The present invention provides such a geothermal heat exchange system and method. In reference to FIG. 3, the present invention is a geothermal exchange system making use of a ground circuit 1, an augmentation circuit 2, a refrigerant loop 3, a refrigerant / water heat exchanger 4, and a augmentation water / water heat exchanger 5. The ground circuit 1 consists of a series of water loops of the geothermal exchange system that extend down into ground. This allows flowing water to extract or dispel heat in a geothermal heat exchange. The augmentation circuit 2 consists of dual loops ...

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Abstract

The present invention is a geothermal exchange process to deliver water, in a closed loop ground to water system, at temperatures approaching that of ground water. Such water temperatures were heretofore only achievable with ground water systems. Optimum energy saving and performance of ground coupled heat pumps are directly linked to heat exchange between a circulating water loop and ground temperature. This invention allows for the optimization of energy and performance. The efficiency of heat pumps diminishes with descending outside air temperatures. This invention allows for the manipulation of entry water temperatures to stem the problem of diminishing efficiencies. The water system makes use of a uniquely designed geothermal exchange module with increased conductivity to maximize heat transfer into the water.

Description

[0001]The current application claims a priority to the U.S. Provisional Patent application Ser. No. 61 / 355,734 filed on Jun. 17, 2010.FIELD OF THE INVENTION[0002]The present invention relates to a ground / water heat exchanger with optional water temperature augmentation. More specifically, the present invention is a system that improves on geothermal heat exchange and heat pump performance.BACKGROUND OF THE INVENTION[0003]Geothermal heat exchange is the exchange of heat between the earth mass and a working fluid. There are three principal types of geothermal systems in use.[0004]In the open loop system, water can be sourced by a pond, lake or river. Most often however; the system is sourced by an underground stream as in a well. In such circumstance the underground water temperature approximates the surrounding earth temperature. Well water is pumped to the user's location where heat is extracted (or discharged when in the cooling mode) in a water / refrigerant heat exchange and then r...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): F25D23/00
CPCF24D3/18F24D2200/11F24J3/084Y02B30/12F25B30/06Y02B10/40Y02E10/125F25B25/005F24T10/17Y02E10/10Y02P80/10
Inventor KRIMSKY, LEONARD C.
Owner KRIMSKY LEONARD C
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