A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger

The clogging problem during injection seriously limits the development and utilization of geothermal resources in unconsolidated sandstone area. Deep borehole heat exchanger can circumvent the problem of clogging, and however, high drilling and completion costs restrict its application. To reduce th...

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Main Authors: Yanxin Wang, Xianbiao Bu
Format: Article
Language:English
Published: Elsevier 2021-08-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21003208
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spelling doaj-5ef73317072b4dc8b379e7925ca9fe592021-07-09T04:44:01ZengElsevierCase Studies in Thermal Engineering2214-157X2021-08-0126101157A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchangerYanxin Wang0Xianbiao Bu1Sinopec Star Petroleum Co., LTD, Beijing, 100083, ChinaGuangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou, 510640, China; Corresponding author.The clogging problem during injection seriously limits the development and utilization of geothermal resources in unconsolidated sandstone area. Deep borehole heat exchanger can circumvent the problem of clogging, and however, high drilling and completion costs restrict its application. To reduce the drilling and completion costs and shorten the payback period, here a multi-directional wells deep borehole heat exchanger (MDWDBHE) system is proposed by sharing the vertical well and drilling directional wells at the lower part of vertical well with high extracted thermal output per meter well depth. The research result shows that for vertical well without directional well, the dynamic payback period is 18.55 years, while for MDWDBHE having 3 and 4 directional wells with the deflection point depth of 2000 m, the dynamic payback period is respectively 7.70 and 7.51 years, indicating that MDWDBHE can be popularized on a large scale just like the shallow ground source heat pump.http://www.sciencedirect.com/science/article/pii/S2214157X21003208Deep borehole heat exchangerUnconsolidated sandstoneDirectional wellsMulti-directional wells deep borehole heat exchanger
collection DOAJ
language English
format Article
sources DOAJ
author Yanxin Wang
Xianbiao Bu
spellingShingle Yanxin Wang
Xianbiao Bu
A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
Case Studies in Thermal Engineering
Deep borehole heat exchanger
Unconsolidated sandstone
Directional wells
Multi-directional wells deep borehole heat exchanger
author_facet Yanxin Wang
Xianbiao Bu
author_sort Yanxin Wang
title A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
title_short A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
title_full A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
title_fullStr A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
title_full_unstemmed A novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
title_sort novel method of acquiring geothermal energy from unconsolidated sandstone reservoir by multi-directional wells deep borehole heat exchanger
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2021-08-01
description The clogging problem during injection seriously limits the development and utilization of geothermal resources in unconsolidated sandstone area. Deep borehole heat exchanger can circumvent the problem of clogging, and however, high drilling and completion costs restrict its application. To reduce the drilling and completion costs and shorten the payback period, here a multi-directional wells deep borehole heat exchanger (MDWDBHE) system is proposed by sharing the vertical well and drilling directional wells at the lower part of vertical well with high extracted thermal output per meter well depth. The research result shows that for vertical well without directional well, the dynamic payback period is 18.55 years, while for MDWDBHE having 3 and 4 directional wells with the deflection point depth of 2000 m, the dynamic payback period is respectively 7.70 and 7.51 years, indicating that MDWDBHE can be popularized on a large scale just like the shallow ground source heat pump.
topic Deep borehole heat exchanger
Unconsolidated sandstone
Directional wells
Multi-directional wells deep borehole heat exchanger
url http://www.sciencedirect.com/science/article/pii/S2214157X21003208
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