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Thermodynamic analysis of a ground-source heat pump system for district heating

机译:区域供热地源热泵系统的热力学分析

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This study deals with the thermodynamic analysis of ground-source heat pump (GSHP) systems for district heating. The mass, energy, entropy and exergy balance relations are derived and applied to a GSHP system with a U-bend ground heat exchanger. The performance characteristics of this GSHP system are evaluated in terms of energetic and exergetic aspects. Based on the measurements conducted on 7 January 2004, the heat extraction rate from the soil is found to be, on average, 61.4Wm~(-1) of bore depth, while the required borehole length in meter per kW of heating capacity is obtained as 11.71. The entering water temperature to the unit is measured to be 15.3 deg C. The heating coefficient of performance of the heat pump (COP_(HP)) is about 2.85, while that for the whole system is obtained to be 7.4 percent lower than COP_(HP). The exergy efficiency values for the heat pump unit and whole system are found to be 66.8 and 66.6 percent, respectively.
机译:本研究涉及用于区域供热的地源热泵(GSHP)系统的热力学分析。推导了质量,能量,熵和火用平衡关系,并将其应用于具有U型弯管地面热交换器的GSHP系统。 GSHP系统的性能特点是从精力充沛和精力充沛的方面进行评估的。根据2004年1月7日进行的测量,从土壤中提取的热量平均为钻孔深度的61.4Wm〜(-1),同时获得了所需的钻孔长度(以米/千瓦为单位)如11.71。单元的进水温度经测量为15.3摄氏度。热泵的性能热系数(COP_(HP))约为2.85,而整个系统的热系数比COP_(低7.4%)。生命值)。热泵机组和整个系统的火用效率分别为66.8%和66.6%。

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