Energy saving potential pre-estimation approach for air-source heat pump usage in China based on thermodynamic irreversibility

IF 0.9 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY
Jianwu Xiong, Linlin Chen, Yin Zhang
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Abstract

Building sector accounts for a substantial part of energy consumption (EC) and carbon emissions, mainly serving for building services engineering systems. As a known advanced high-efficiency equipment, air source heat pump (ASHP) has been increasingly used for indoor heating ventilation and air conditioning (HVAC) for residential and public buildings. Thus how to pre-estimate the energy saving potential (ESP) for given ASHPs under different climatic conditions is of high value for practical engineering application. In this paper, upon thermodynamic perfectibility conception, a simplified ASHP model is proposed to simulate its dynamic thermal performance according to the disparity between real equipment and the ideal reverse Carnot cycle. Moreover, a novel thermodynamic approach is proposed to pre-estimate and compare the seasoning-based ESPs of ASHP used for both heating and cooling. For illustrative examples, a typical public building is chosen, and the AHSP-ESPs are obtained and analyzed for five cities of different climate zones in China (Qiqihar, Beijing, Chengdu, Kunming, and Guangzhou). Preliminary research results show that lower/higher ambient temperatures contribute to higher heating/cooling ESPs respectively. However, the correlation between building EC and thermodynamic perfectibility is in inverse proportion. At first, building EC decreases rapidly with the increase of thermodynamic perfectibility, but as the thermal performance of ASHP gets closer to the corresponding ideal ones, the impact of thermodynamic perfectibility on building EC gradually decreases. This work is of great significance in understanding the regional applicability of ASHP and building EC, and providing application references for real ASHP usage in building sectors.

基于热力学不可逆性的中国空气源热泵使用节能潜力预估方法
建筑行业占能源消耗(EC)和碳排放的很大一部分,主要服务于建筑服务工程系统。作为一种已知的先进高效设备,空气源热泵(ASHP)已越来越多地用于住宅和公共建筑的室内供暖、通风和空调(HVAC)。因此,如何预估特定 ASHP 在不同气候条件下的节能潜力(ESP)对实际工程应用具有很高的价值。本文根据热力学完美性概念,提出了一种简化的 ASHP 模型,以根据实际设备与理想反向卡诺循环之间的差异模拟其动态热性能。此外,还提出了一种新颖的热力学方法,用于预先估算和比较用于供热和制冷的 ASHP 基于季节的静电除尘器。为了举例说明,我们选择了一座典型的公共建筑,并获得和分析了中国五个不同气候区城市(齐齐哈尔、北京、成都、昆明和广州)的自动空调静电除尘器。初步研究结果表明,较低/较高的环境温度分别会导致较高的供暖/制冷静电除尘器。然而,建筑能效比与热力学完美性之间的关系是成反比的。起初,随着热力学完美性的提高,建筑能耗会迅速降低,但随着 ASHP 的热性能越来越接近相应的理想性能,热力学完美性对建筑能耗的影响逐渐减小。这项工作对于了解 ASHP 的区域适用性和建筑EC具有重要意义,并为 ASHP 在建筑领域的实际应用提供了参考。
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来源期刊
Journal of Engineering Research
Journal of Engineering Research ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
10.00%
发文量
181
审稿时长
20 weeks
期刊介绍: Journal of Engineering Research (JER) is a international, peer reviewed journal which publishes full length original research papers, reviews, case studies related to all areas of Engineering such as: Civil, Mechanical, Industrial, Electrical, Computer, Chemical, Petroleum, Aerospace, Architectural, Biomedical, Coastal, Environmental, Marine & Ocean, Metallurgical & Materials, software, Surveying, Systems and Manufacturing Engineering. In particular, JER focuses on innovative approaches and methods that contribute to solving the environmental and manufacturing problems, which exist primarily in the Arabian Gulf region and the Middle East countries. Kuwait University used to publish the Journal "Kuwait Journal of Science and Engineering" (ISSN: 1024-8684), which included Science and Engineering articles since 1974. In 2011 the decision was taken to split KJSE into two independent Journals - "Journal of Engineering Research "(JER) and "Kuwait Journal of Science" (KJS).
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