论文标题
哈萨克斯坦的水和空间加热应用的地面源热泵系统的实验和理论研究
Experimental and Theoretical Investigations of a Ground Source Heat Pump System for Water and Space Heating Applications in Kazakhstan
论文作者
论文摘要
地面源热泵加热系统被认为是在哈萨克斯坦(Hazakhstan)等大陆气候条件下向绿色加热过渡的最佳解决方案之一。在本文中,在哈萨克斯坦的天气条件下进行了实验和理论研究,以开发基于地面的热泵加热系统,并评估其热力学性能。与地面源热交换器集成并使用制冷剂R134A的水到水热泵加热系统旨在提供热水以满足太空加热需求。发现性能系数和实验结果的预测值在6.2%以内非常吻合。还使用各种环境友好的制冷剂(例如R152A,R450A,R513A,R513A,R1234YF和R1234ZE)评估了系统的热力学性能,作为R134A的潜在替代方法。尽管发现R152A在R134A的效果系数和总等效变暖影响方面是一个很好的选择,但其可燃性阻碍了其应用。使用制冷剂R450A,R513A,R1234YF和R1234ZE的加热系统比R134A的性能低2-3%。发现最高的灭绝破坏归因于压缩机,其次是膨胀阀,蒸发器和冷凝器。考虑到它们的低易燃性和低环境影响,R450A,R513A,R1234YF和R1234ZE被确定为R134A的宝贵替代品。
The ground source heat pump heating system is considered as one of the best solutions for the transition towards green heating under the continental climate conditions like Kazakhstan. In this paper, experimental and theoretical investigations were carried out to develop a ground source heat pump-based heating system under the weather conditions in Kazakhstan and to evaluate its thermodynamic performance. The water-to-water heat pump heating system, integrated with a ground source heat exchanger and used refrigerant R134a, was designed to provide hot water to meet the requirements for space heating. The predicted values of the coefficient of performance and the experimental results were found to be in good agreement within 6.2%. The thermodynamic performance of the system was also assessed using various environment-friendly refrigerants, such as R152a, R450A, R513A, R1234yf and R1234ze, as potential replacements for R134a. Although R152a is found to be a good alternative for R134a in terms of coefficient of performance and total equivalent warming impact, its flammability hinders its application. The heating system using refrigerants R450A, R513A, R1234yf and R1234ze shows 2-3% lower coefficient of performance than that of R134a. The highest exergy destruction is found to be attributed to the compressor, followed by the expansion valve, evaporator, and condenser. Considering their low flammability and low environmental impact, R450A, R513A, R1234yf and R1234ze are identified as valuable replacements for R134a.