Thermal performance of medium-deep U-type borehole heat exchanger based on a novel numerical model considering groundwater seepage
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Elsevier BV
Reference39 articles.
1. A global review of energy consumption, CO 2 emissions and policy in the residential sector (with an overview of the top ten CO 2 emitting countries);Nejat;Renew. Sustain. Energy Rev.,2015
2. Designing net-zero energy buildings for the future climate, not for the past;Robert;Build. Environ.,2012
3. Influencing factors analysis and operation optimization for the long-term performance of medium-deep borehole heat exchanger coupled ground source heat pump system;Liu;Energy Build.,2020
4. Analytical modeling and thermal analysis of deep coaxial borehole heat exchanger with stratified-seepage-segmented finite line source method (S3-FLS);Luo;Energy Build.,2022
5. Influencing factors analysis for the long-term thermal performance of medium and deep U-type borehole heat exchanger system;Huang;J. Build. Eng.,2023
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3. A novel preheating system in pressure reduction stations—natural gas directly flowing inside deep borehole heat exchangers;Journal of Cleaner Production;2024-09
4. Numerical modeling and thermal performance analysis of deep borehole heat exchangers considering groundwater seepage;Applied Thermal Engineering;2024-08
5. A comprehensive transient heat transfer simulation of U-tube borehole heat exchanger considering porous media and subterranean water seepage;Chemical Papers;2024-04-16
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