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Experimental performance evaluation of a closed-loop vertical ground source heat pump in the heating mode using energy analysis method

机译:能量分析法评估闭环立式地源热泵采暖模式的实验性能。

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摘要

An experimental study is performed to determine the performance of a ground source heat pump (GSHP) system in the heating mode in the city of Erzurum, Turkey. The GSHP system using R-134a as refrigerant has a single U-tube ground heat exchanger (GHE) made of polyethylene pipe with a 16 mm inside diameter. The GHE was placed in a vertical borehole with 55m depth and 203.2mm diameter. The average coefficients of performance (COP) of the GSHP system and heat pump in heating mode are calculated as 2.09 and 2.57, respectively. The heat extraction rate per meter of the borehole is determined as 33.60 Wm~(-1). Considering the current gas and electric prices in Erzurum city, the equivalent COP of the GSHP system should be 2.92 for the same energy cost comparing with natural gas. The virgin ground in Erzurum basin has high permeability and low thermal conductivity. In order to improve the thermal efficiency of GHE and thus improve COP of a GSHP in the basin, the borehole should be backfilled with sand as low-cost backfill material and a 1 to 2 m thick surface plug of clay should be inserted.
机译:在土耳其的埃尔祖鲁姆市,进行了一项实验研究,以确定在加热模式下的地源热泵(GSHP)系统的性能。使用R-134a作为制冷剂的GSHP系统具有单个U型管地面换热器(GHE),该换热器由聚乙烯管制成,内径为16 mm。 GHE放置在深度为55m,直径为203.2mm的垂直钻孔中。 GSHP系统和热泵在加热模式下的平均性能系数(COP)分别计算为2.09和2.57。每米钻孔的热量提取速率确定为33.60 Wm〜(-1)。考虑到埃尔祖鲁姆市当前的天然气和电力价格,与天然气相比,在相同的能源成本下,GSHP系统的等效COP应该为2.92。埃尔祖鲁姆盆地的原始地面具有高渗透率和低导热率。为了提高GHE的热效率,从而提高盆地中GSHP的COP,应在井眼中填充沙子作为低成本的回填材料,并应插入1至2 m厚的粘土表面塞。

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