Enhancing partial load efficiency of air source heat pump heating systems: A comprehensive review of magnitude, influencing factors, and improvement strategies

IF 6.7 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
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引用次数: 0

Abstract

Air source heat pumps (ASHP) are considered worldwide as an effective alternative to heating with fossil fuels. With the improvement of heating performance under low temperature conditions and the continuous development of advanced defrosting methods, the deterioration of partial load performance in heating applications has become more and more obvious. Many researchers have found that performance in field testing is lower than performance tested in steady-state laboratory operation. This article summarizes the research of the past decades on the aspects of the partial load efficiency loss phenomenon, the magnitude, the influencing factors and improvement strategies, and the efficiency improvement methods for existing ASHP heating systems could be divided into three categories: 1.Improving the thermal inertia of the system, 2.Reducing the deviation between heating capacity and building load, 3.Reducing the water pump performance. It is hoped that with the continuous improvement of the energy efficiency of ASHP units, more attention will be paid to the influencing factors and improvement methods of systems.

提高空气源热泵供暖系统的部分负荷效率:规模、影响因素和改进策略综合评述
空气源热泵(ASHP)在全世界被视为化石燃料供暖的有效替代品。随着低温条件下供热性能的提高和先进除霜方法的不断发展,供热应用中部分负荷性能的下降变得越来越明显。许多研究人员发现,现场测试的性能低于实验室稳态运行测试的性能。本文总结了过去几十年来对部分负荷效率损失现象、程度、影响因素和改进策略等方面的研究,并将现有 ASHP 供热系统的效率改进方法分为三类:1.改善系统热惯性;2.减少供热能力与建筑负荷之间的偏差;3.降低水泵性能。希望随着 ASHP 机组能效的不断提高,系统的影响因素和改进方法能得到更多的关注。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of building engineering
Journal of building engineering Engineering-Civil and Structural Engineering
CiteScore
10.00
自引率
12.50%
发文量
1901
审稿时长
35 days
期刊介绍: The Journal of Building Engineering is an interdisciplinary journal that covers all aspects of science and technology concerned with the whole life cycle of the built environment; from the design phase through to construction, operation, performance, maintenance and its deterioration.
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