Performance of a full-scale energy pile for underground solar energy storage

This study presents a field test to investigate the thermal injection performance of a full-scale energy pile for underground solar energy storage (USES). The tested energy comprises a full-scale bridge pile foundation and a spiral-shaped pipe. Numerical modeling was carried out to provide complemen...

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Main Authors: Di Wu, Gangqiang Kong, Hanlong Liu, Qiang Jiang, Qing Yang, Liang Kong
Format: Article
Language:English
Published: Elsevier 2021-10-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21004767
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spelling doaj-78670d37d5a84066a82125014752fff62021-09-03T04:45:37ZengElsevierCase Studies in Thermal Engineering2214-157X2021-10-0127101313Performance of a full-scale energy pile for underground solar energy storageDi Wu0Gangqiang Kong1Hanlong Liu2Qiang Jiang3Qing Yang4Liang Kong5School of Science, Qingdao University of Technology, Fushun Road No. 11, Qingdao, Shandong, 266033, PR ChinaKey Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University, Xikang Road No.1, Nanjing, Jiangsu, 210098, PR China; Corresponding author.Key Laboratory of New Technology for Construction of Cities in Mountain Area, Shabei Road No.83, Chongqing University, Chongqing, 400045, PR ChinaJiangyin Construction Project Management Office, Jiangyin, Jiangsu, 214400, ChinaState Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, 116024, ChinaSchool of Science, Qingdao University of Technology, Fushun Road No. 11, Qingdao, Shandong, 266033, PR ChinaThis study presents a field test to investigate the thermal injection performance of a full-scale energy pile for underground solar energy storage (USES). The tested energy comprises a full-scale bridge pile foundation and a spiral-shaped pipe. Numerical modeling was carried out to provide complementary results. Sensitivity analyses of the pipe configuration and operation mode on the thermal injection performance of the energy pile were performed based on the numerical modeling. The results showed that 84% of the injected thermal energy could be transferred to the surrounding soil by the energy pile, and the total amount of the thermal energy stored by a single energy pile was −3.2 GJ over 29.5 days. The maximum average value of the thermal injection rate of the energy pile was equal to −129 W/m, which was 2–3 times larger than the thermal injection rate of the geothermal boreholes. Compared to the continuous USES operation of the energy pile, the intermittent mode of the energy pile was more efficient for USES. Increasing the length of the heat exchange pipe of the energy pile was more effective in enhancing the thermal injection performance of the energy pile for USES than changing the pipe shape.http://www.sciencedirect.com/science/article/pii/S2214157X21004767Underground solar energy storageEnergy pileThermal injection performanceField testNumerical modeling
collection DOAJ
language English
format Article
sources DOAJ
author Di Wu
Gangqiang Kong
Hanlong Liu
Qiang Jiang
Qing Yang
Liang Kong
spellingShingle Di Wu
Gangqiang Kong
Hanlong Liu
Qiang Jiang
Qing Yang
Liang Kong
Performance of a full-scale energy pile for underground solar energy storage
Case Studies in Thermal Engineering
Underground solar energy storage
Energy pile
Thermal injection performance
Field test
Numerical modeling
author_facet Di Wu
Gangqiang Kong
Hanlong Liu
Qiang Jiang
Qing Yang
Liang Kong
author_sort Di Wu
title Performance of a full-scale energy pile for underground solar energy storage
title_short Performance of a full-scale energy pile for underground solar energy storage
title_full Performance of a full-scale energy pile for underground solar energy storage
title_fullStr Performance of a full-scale energy pile for underground solar energy storage
title_full_unstemmed Performance of a full-scale energy pile for underground solar energy storage
title_sort performance of a full-scale energy pile for underground solar energy storage
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2021-10-01
description This study presents a field test to investigate the thermal injection performance of a full-scale energy pile for underground solar energy storage (USES). The tested energy comprises a full-scale bridge pile foundation and a spiral-shaped pipe. Numerical modeling was carried out to provide complementary results. Sensitivity analyses of the pipe configuration and operation mode on the thermal injection performance of the energy pile were performed based on the numerical modeling. The results showed that 84% of the injected thermal energy could be transferred to the surrounding soil by the energy pile, and the total amount of the thermal energy stored by a single energy pile was −3.2 GJ over 29.5 days. The maximum average value of the thermal injection rate of the energy pile was equal to −129 W/m, which was 2–3 times larger than the thermal injection rate of the geothermal boreholes. Compared to the continuous USES operation of the energy pile, the intermittent mode of the energy pile was more efficient for USES. Increasing the length of the heat exchange pipe of the energy pile was more effective in enhancing the thermal injection performance of the energy pile for USES than changing the pipe shape.
topic Underground solar energy storage
Energy pile
Thermal injection performance
Field test
Numerical modeling
url http://www.sciencedirect.com/science/article/pii/S2214157X21004767
work_keys_str_mv AT diwu performanceofafullscaleenergypileforundergroundsolarenergystorage
AT gangqiangkong performanceofafullscaleenergypileforundergroundsolarenergystorage
AT hanlongliu performanceofafullscaleenergypileforundergroundsolarenergystorage
AT qiangjiang performanceofafullscaleenergypileforundergroundsolarenergystorage
AT qingyang performanceofafullscaleenergypileforundergroundsolarenergystorage
AT liangkong performanceofafullscaleenergypileforundergroundsolarenergystorage
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