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Simple index for onsite operation management of ground source heat pump systems in cooling-dominant regions

机译:冷却为主地区的地源热泵系统现场运行管理的简单指标

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In ground source heat pump (GSHP) systems, large imbalances between cooling and heating loads cause a rise or decline in ground temperature because of thermal interference between multiple ground heat exchangers (GHEs). To evaluate annual changes in ground temperature, we applied a variable temperature penalty, which was simply obtained using measured data without computer simulation. First, we examined measured data for 3 years after completion of a hybrid GSHP system that had 70 borehole-type GHEs, combined with an air source heat pump unit. In the hybrid system, the GSHP showed high efficiency (coefficient of performance 5.0) throughout the year and had a variable contribution between years with regard to cooling/heating output and time of operation. The amount of heat rejected to the ground by cooling reached -4.8 times that of heat extracted from the ground by heating after 3 years of operation. This imbalance produced ground temperature increases of -3 degrees C in an internal borehole. The variable temperature penalty reproduced the measured temperature increase, suggesting that the index is appropriate for assessing long-term ground temperature changes in the operation phase. This simple index allows operational improvement onsite and will aid the sustainable operation of GSHP systems in cooling-dominant regions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在地源热泵(GSHP)系统中,由于多个地面热交换器(GHE)之间的热干扰,制冷和热负荷之间的巨大失衡会导致地面温度升高或降低。为了评估地面温度的年度变化,我们应用了可变的温度损失,该损失只是使用测量数据获得而无需计算机模拟。首先,我们完成了具有70个钻孔型GHE的混合GSHP系统与空气源热泵单元的组合后,完成了3年的测量数据。在混合动力系统中,GSHP全年表现出较高的效率(性能系数> 5.0),并且在冷却/加热输出和运行时间方面,年份之间的贡献可变。经过3年的运行,通过冷却排到地面的热量达到了从地面提取的热量的-4.8倍。这种不平衡导致内部钻孔中的地面温度升高了-3摄氏度。可变的温度损失再现了测得的温度升高,表明该指数适合评估运行阶段的长期地面温度变化。这个简单的指标可以在现场改善运行状况,并有助于在冷却为主的地区GSHP系统的可持续运行。 (C)2018 Elsevier Ltd.保留所有权利。

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