Selection and techno-economic analysis of hybrid ground source heat pumps used in karst regions

Author:

Zhou Weisong1,Pei Peng1ORCID,Mao Ruiyong2,Qian Haibin3,Hu Yanbing3,Zhang Jin4

Affiliation:

1. College of Mines, Guizhou University, Guiyang, China

2. School of Civil Engineering, Guizhou University, Guiyang, China

3. Beijing Talent New Energy Technologies Ltd., Beijing, China

4. Institute of Groundwater and Earth Sciences, Jinan University, Guangzhou, China

Abstract

In order to take advantage of different forms of heat pumps and to mitigate thermal imbalance underground caused by long-term operation of ground source heat pumps, hybrid ground source heat pump systems have received an increasing attention. In this research, based on the fact that abundant groundwater resources are commonly available in karst regions, a new strategy is introduced for selecting and determining hybrid ground source heat pump capacity. Five scenarios of hybrid ground source heat pump system coupling groundwater source heat pumps with other supplementary heat pumps are proposed in this article to provide appropriate options to eliminate heat buildup under different hydrogeologic conditions. Methodologies for sizing and selection are established. Then, a case study of techno-economic analysis was performed for a project in the karst region in South China. The results showed that these scenarios can effectively mitigate heat buildup, and under the hydrogeologic condition in the case study. Compared to the solo ground-coupled heat pump solution, the optimal solution (Solution 4 in this study) can reduce the annual costs by 16.10% and reduce the capital investment by 60%. Methodologies developed in this study are beneficial for selecting appropriate approaches to mitigate heat buildup and enhance competitiveness of ground source heat pumps.

Funder

Science Foundation of Department of Science & Technology of Guizhou Province

Joint Funds of Department of Science & Technology of Guizhou Province and Guizhou University

National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Multidisciplinary

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