Research on the design and application of capillary heat exchangers for heat pumps in coastal areas

Author:

Bai Zhenpeng12ORCID,Li Yanfeng1,Zhang Jin3,Fewkes Alan4,Zhong Hua4ORCID

Affiliation:

1. Research in Building Fire Safety And Energy Saving Technology, Beijing Key Laboratory of Green Built Environment and Energy Efficient Technology, Beijing University of Technology, Beijing, China

2. College of Building Environment Engineering, Zhengzhou University of Light Industry, Zhengzhou, China

3. Beijing Municipal Institute of Labour Protection, Beijing, China

4. School of Architecture, Design and Built Environment, Nottingham Trent University, Nottingham, UK

Abstract

This study investigated the optimal design of a capillary heat exchanger device for the heat pump system and its innovative engineering application in a building. The overall aim was to use a capillary heat exchanger to obtain energy in coastal areas for promoting renewable energy in low-carbon building design. Initially, the main factors affecting the efficiency of the capillary heat exchanger were identified, a mathematical model was then established to analyse the heat transfer process. The analysis showed the flow rate and the capillary length are the key factors affecting the efficiency of the capillary heat exchanger. Secondly, to optimize the structural design of the capillary heat exchanger, the heat energy transfer is calculated with different lengths of the capillary under various flow rates in summer and winter conditions, respectively. Thirdly, a typical building is selected to analyse the application of the capillary heat exchanger for extracting energy in the coastal area. The results show the performance of the selected capillary heat exchanger heat pump system, in winter, the heat energy transfer rate is 60 W/m2 when the seawater temperature is 3.7 °C; in summer, the heat energy transfer rate is 150 W/m2 when the seawater temperature is 24.6 °C. Finally, the above field test results were examined using a numerical simulation model, the test and simulation results agree with each other quite well. This paper is conducive in promoting the development of the capillary heat exchanger heat pump as an innovative sustainable technology for net-zero energy and low carbon buildings using renewable energy in coastal areas. Practical application: A recently proposed capillary heat exchanger is used as an energy extraction and utilisation device to obtain energy in coastal areas for promoting renewable energy in low-carbon building design. This paper explores the application of a capillary heat exchanger as both cold and heat sources for application in typical low-rise buildings. The analysis of the heat energy transfer rate of a typical low-rise building located in a coastal area in summer and winter provides guidance for the application of capillary heat exchangers.

Funder

National Natural Science Foundation of China a major plan”, and the “Thermal mass transfer and thermal performance index system of enclosure structure in extremely hot and humid climate zone in China

Publisher

SAGE Publications

Subject

Building and Construction

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