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Experimental performance analysis of a solar assisted ground-source heat pump greenhouse heating system

机译:太阳能辅助地源热泵温室供暖系统的实验性能分析

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Ground-source heat pumps (GSHPs), also known as geothermal heat pumps (GHPs), are recognized to be outstanding heating, cooling and water heating systems, and have been used since 1998 in the Turkish market. Greenhouses also have important economical potential in Turkey's agricultural sector. In addition to solar energy gain, greenhouses should be heated during nights and cold days. In order to establish optimum growth conditions in greenhouses, renewable energy sources should be utilized as much as possible. It is expected that effective use of heat pumps with a suitable technology in the modern greenhouses will play a leading role in Turkey in the foreseeable future. The main objective of the present study is to investigate to the performance characteristics of a solar assisted ground-source heat pump greenhouse heating system (SAGSHPGHS) with a 50 m vertical 1x1/4 in. nominal diameter U-bend ground heat exchanger using exergy analysis method. This system was designed and constructed in Solar Energy Institute of Ege University, Izmir, Turkey. The exergy transports between the components and the destructions in each of the components of the SAGSHPGHS are determined for the average measured parameters obtained from the experimental results. Exergetic efficiencies of the system components are determined in an attempt to assess their individual performances and the potential for improvements is also presented. The heating coefficient of performances of the ground-source heat pump unit and the overall system are obtained to be 2.64 and 2.38, respectively, while the exergetic efficiency of the overall system is found to be 67.7%.
机译:地源热泵(GSHP),也称为地热热泵(GHP),是公认的出色的供热,制冷和水加热系统,自1998年以来已在土耳其市场使用。温室在土耳其的农业部门中也具有重要的经济潜力。除了获得太阳能外,温室还应在夜晚和寒冷的日子里加热。为了在温室中建立最佳生长条件,应尽可能利用可再生能源。可以预见,在可预见的将来,在现代温室中有效使用具有合适技术的热泵将在土耳其发挥领导作用。本研究的主要目的是通过火用分析来研究具有50 m垂直1x1 / 4英寸公称直径U型弯管地面换热器的太阳能辅助地源热泵温室供暖系统(SAGSHPGHS)的性能特征。方法。该系统是在土耳其伊兹密尔Ege大学太阳能研究所设计和建造的。对于从实验结果中获得的平均测量参数,确定了SAGSHPGHS组件之间的火用传递和每个组件中的破坏。确定系统组件的效率,以评估它们的各个性能,并提出改进的可能性。得出地源热泵单元和整个系统的性能热系数分别为2.64和2.38,而整个系统的能量效率为67.7%。

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