Recent Developments in the Design of Vertical Borehole Ground Heat Exchangers for Cost Reduction and Thermal Energy Storage

Author:

Liu Xiaobing1,Spitler Jeffrey D.2,Qu Ming3,Shi Liang3

Affiliation:

1. Oak Ridge National Laboratory, One Bethel Valley Road, P. O. Box 2008, MS-6067, Oak Ridge, TN 37830

2. School of Mechanical and Aerospace Engineering, Oklahoma State University, Stillwater, OK 74078-5016

3. Lyles School of Civil Engineering, Purdue University, West Lafayette, IN 47907-2051

Abstract

Abstract Ground source (geothermal) heat pumps (GSHPs) can meet the thermal demands of buildings in an energy-efficient manner. The current high installation costs and long payback period limit the attractiveness of GSHP installation in the United States. Vertical borehole ground heat exchangers (VBGHEs), which are commonly used in GSHP systems, contribute most to the cost premium of GSHPs. Reducing the cost of VBGHEs could help increase market penetration of GSHP systems. This paper reviews recent developments for VBGHEs, including improvements in borehole heat transfer and borehole field layout, integration with thermal energy storage, and new design tools. Improvements in the borehole design and materials are more likely to be justified when the ground has high thermal conductivity. Integrating thermal energy storage can provide additional value to the GSHP system, especially when flexible electric demand at buildings becomes more valuable. Advanced design tools for VBGHEs that account for the thermal response of irregularly shaped borehole fields and that are more closely integrated with whole-building energy simulation programs may facilitate more innovations and optimization of GSHP system designs.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference107 articles.

1. Geothermal(Ground-Source)Heat Pumps: Market Status, Barriers to Adoption, and Actions to Overcome Barriers

2. GeoVision Analysis Supporting Task Force Report: Thermal Applications—Geothermal Heat Pumps

3. Design and Installation of Ground Source Heat Pump Systems for Commercial and Residential Buildings;ANSI (American National Standards Institute),2016

4. Geothermal Heat Pumps—An Overview;Lund;Q. Bull., Geo-Heat Center,2001

5. Performance Analysis of a Ground-Source Heat Pump System Using Mine Water as Heat Sink and Source;Liu;ASHRAE Trans.,2016

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