Development of a Variable Water Temperature Control Method for Air Source Heat Pump Based on the Supply-Demand Balance

35 Pages Posted: 24 Feb 2022

See all articles by Yuying Sun

Yuying Sun

Beijing University of Technology

Xintian Li

Beijing University of Technology

Wenzhe Wei

Beijing University of Technology

Huiyu Xue

China Academy of Building Research

Wei Wang

Beijing University of Technology

Shiming Deng

Qatar University

Abstract

Air source heat pumps (ASHPs) are one of the popular approaches for clean energy heating in China. In practice applications, the setting value of its supply water temperature is long-term fixed, resulting in the poor coefficient of performance (COP) under partial load conditions. To improve the COP of ASHP, a real-time variable water temperature (VWT) control method for its supply water temperature was proposed in this work. In this control method, the optimal supply water temperature was calculated based on the supply and demand balance, and used as the setting value of supply water temperature. Then using an ASHP-radiant floor heating system, the feasibility and energy-saving performance of the proposed control method were investigated through experiment and simulation. Results indicate that the ASHP heating system can run smoothly when adopting the proposed VWT control method. Compared with the results in CWT control method, in the whole heating season, the COP of ASHP unit in VWT control method is 22.88% higher, while the building heating energy consumption is 26.16% lower. Besides, the percentage of PMV between −0.5 and +0.5 increases from 48.61% in CWT control method to 87.86% in VWT control method.

Keywords: Air source heat pump system, Variable water temperature control method, Supply and demand balance, Energy Efficient, Building clean heating

Suggested Citation

Sun, Yuying and Li, Xintian and Wei, Wenzhe and Xue, Huiyu and Wang, Wei and Deng, Shiming, Development of a Variable Water Temperature Control Method for Air Source Heat Pump Based on the Supply-Demand Balance. Available at SSRN: https://ssrn.com/abstract=4042731 or http://dx.doi.org/10.2139/ssrn.4042731

Yuying Sun

Beijing University of Technology ( email )

100 Ping Le Yuan
Chaoyang District
Beijing, 100020
China

Xintian Li

Beijing University of Technology ( email )

100 Ping Le Yuan
Chaoyang District
Beijing, 100020
China

Wenzhe Wei

Beijing University of Technology ( email )

100 Ping Le Yuan
Chaoyang District
Beijing, 100020
China

Huiyu Xue

China Academy of Building Research ( email )

China

Wei Wang (Contact Author)

Beijing University of Technology ( email )

100 Ping Le Yuan
Chaoyang District
Beijing, 100020
China

Shiming Deng

Qatar University ( email )

College of Law
Qatar University
Doha, 2713
Qatar

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