Performance of a direct-expansion solar-assisted heat pump for domestic hot water production in Algeria

Sofiane Benchamma, Mohammed Missoum, Nefissa Belkacem
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Abstract

The focus of this study is to investigate the energy performance of a direct-expansion solar-assisted heat pump water heating system (DX-SAHPWH). The system consists of an unglazed solar collector-evaporator, which can absorb heat from solar energy and air ambient simultaneously, a condenser in the form of a coil immersed in a hot water storage tank, a thermostatic expansion valve and a hermetic reciprocating compressor. The performance of the heat pump system is evaluated using a developed mathematical model under Matlab code. The modelling method is based on lumped and distributed parameter approach of different system components. Numerical calculations were carried-out to study the influence of different parameters, such as ambient temperature, solar radiation intensity and polytropic index on the system performance. Additionally, in order to evaluate the long-term system performance, the system’s model was applied on a case study of a single-family building located in Djelfa (Algeria), which represents the coldest arid region of the country. The results showed that the solar radiation intensity and ambient temperature have significant effects on the heat pump performance. A COP of 5.9 and a collector-evaporator efficiency of 1.9 were obtained at high solar radiation of 850 W/m2 resulting in lower heating time (29 min). In addition, results revealed that the system can operate even at lower ambient temperature due to its ability to take advantage of heat from the ambient air. The results from the case study gave a COP ranging from 2.3 to 3.8, which enhance the promising adoption of this system in domestic hot water production to respond to people daily life needs with clean, abundant and renewable energy.
阿尔及利亚用于生产生活热水的直接膨胀式太阳能辅助热泵的性能
本研究的重点是调查直接膨胀式太阳能辅助热泵热水系统(DX-SAHPWH)的能源性能。该系统由一个可同时从太阳能和环境空气中吸收热量的无釉太阳能集热器-蒸发器、一个浸入热水储罐的盘管形式的冷凝器、一个恒温膨胀阀和一个全封闭往复式压缩机组成。热泵系统的性能使用 Matlab 代码下开发的数学模型进行评估。建模方法基于不同系统组件的集合参数法和分布参数法。通过数值计算,研究了不同参数(如环境温度、太阳辐射强度和多热带指数)对系统性能的影响。此外,为了评估系统的长期性能,还将系统模型应用于位于阿尔及利亚杰尔法(该国最寒冷的干旱地区)的一栋单户建筑的案例研究。结果表明,太阳辐射强度和环境温度对热泵性能有显著影响。在 850 瓦/平方米的高太阳辐射强度下,热泵的 COP 为 5.9,集热器-蒸发器效率为 1.9,从而缩短了加热时间(29 分钟)。此外,研究结果表明,由于该系统能够利用环境空气中的热量,因此即使在较低的环境温度下也能运行。案例研究结果表明,该系统的 COP 值介于 2.3 到 3.8 之间,因此有望在生活热水生产中采用该系统,以清洁、丰富的可再生能源满足人们的日常生活需求。
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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