Performance Investigation of Dual-Source Heat Pumps in Hot Steppe Climates

Hamza El Hafdaoui, A. Khaldoun, A. Khallaayoun, A. Jamil, K. Ouazzani
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Abstract

There has been much research last decades about the feasibility of installing air-source and ground-source heat pump systems in cold areas in North America, Europe, and China. Unfortunately, not a single study has been conducted on the usage of heat pumps systems in hot steppe regions, despite the fact that hot and semi-arid (steppe) climates are met in huge territories across the globe. Furthermore, not many papers investigated the use of dual-source heat pumps. Hence, this research is the first to investigate the performance of air-source, ground-source, and air-ground dual-source heat pump systems in warm and steppe zones. The studied systems were evaluated by seasonal energy consumption, coefficient of performance, and energy efficiency ratio. Results revealed that high average thermal conductivity of soil and lower energy demand for heating and cooling in hot steppe climate than hot arid and cold climates. This implies low borehole heat exchangers length, high coefficient of performance of ground-source and dual-source heat pumps, and low energy consumption. Ground-source heat pumps were found to consume up to 60% less than air-source heat pumps, and dual-source heat pumps up to 50 and 79% with respect to air-source and ground-source heat pumps, respectively.
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热草原气候条件下双源热泵性能研究
在过去的几十年里,人们对在北美、欧洲和中国的寒冷地区安装空气源和地源热泵系统的可行性进行了大量的研究。不幸的是,没有一项关于热泵系统在炎热草原地区使用的研究,尽管全球大片地区都有炎热和半干旱(草原)气候。此外,研究双源热泵使用的论文并不多。因此,本研究是第一个研究空气源、地源和空气-地双源热泵系统在温暖和草原地区的性能。通过季节能耗、性能系数和能效比对研究系统进行了评价。结果表明,与炎热干旱和寒冷气候相比,炎热草原气候土壤的平均导热系数较高,加热和冷却的能量需求较低。这意味着井下换热器长度短,地源热泵和双源热泵的性能系数高,能耗低。研究发现,地源热泵的能耗比空气源热泵低60%,双源热泵的能耗分别比空气源热泵和地源热泵低50%和79%。
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