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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Hybrid ground source absorption heat pump in cold regions: Thermal balance keeping and borehole number reduction
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Hybrid ground source absorption heat pump in cold regions: Thermal balance keeping and borehole number reduction

机译:寒冷地区的混合地面源吸收式热泵:保持热量平衡并减少井眼数量

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Thermal imbalance of ground source electrical heat pump (GSEHP) leads to cold accumulation in cold regions. Ground source absorption heat pump (GSAHP) can relieve the thermal imbalance, but may cause heat accumulation in the warmer parts of cold regions. Hybrid GSAHP (HGSAHP) integrated with a cooling tower is proposed to solve this problem. Hourly simulations of single-effect HGSAHP and generator absorber heat exchange (GAX) cycle HGSAHP are conducted, and are compared with hybrid GSEHP (HGSEHP). Results show that the thermal balance can be well kept by HGSAHP, with imbalance ratio reduced from 60-80% to within 20%, and soil temperature variation staying within 3 degrees C after 20 years' operation. Moreover, HGSAHPs are advantageous in heating mode and inferior to FIGSEHP in cooling mode. The annual performance of GAX-cycle HGSAHP is very close to that of HGSEHP in Beijing, while being 17.5% higher than that of HGSEHP in colder regions like Shenyang. Compared with HGSEHP, the required borehole number and occupied land areas can be reduced by 37-52% by single-effect HGSAHP and reduced by 20-38% by GAX-cycle HGSAHP. Additionally, the lifecycle cost of GAX-cycle HGSAHP (coal) is the lowest, while GAX-cycle HGSAHP (gas) is cheaper than conventional HGSEHP (gas) assisted by an auxiliary boiler. (C) 2015 Elsevier Ltd. All rights reserved.
机译:地源电热泵(GSEHP)的热不平衡会导致寒冷地区的冷积聚。地源吸收式热泵(GSAHP)可以缓解热不平衡,但可能会在寒冷地区的较暖部分积聚热量。为了解决这个问题,提出了与冷却塔集成的混合GSAHP(HGSAHP)。每小时进行一次单效HGSAHP和发电机吸收器热交换(GAX)循环HGSAHP的仿真,并将其与混合GSEHP(HGSEHP)进行比较。结果表明,HGSAHP可以很好地保持热平衡,不平衡率从60-80%降低到20%以内,运行20年后土壤温度变化保持在3摄氏度以内。此外,HGSAHP在加热模式下具有优势,而在冷却模式下则劣于FIGSEHP。 GAX周期HGSAHP的年绩效非常接近HGSEHP在北京的水平,但比沉阳等寒冷地区的HGSEHP高17.5%。与HGSEHP相比,单效HGSAHP可以将所需的井眼数量和占地面积减少37-52%,而GAX循环HGSAHP可以将所需的钻孔数量和占地面积减少20-38%。此外,GAX循环HGSAHP(煤)的生命周期成本最低,而GAX循环HGSAHP(燃气)比传统HGSEHP(燃气)借助辅助锅炉便宜。 (C)2015 Elsevier Ltd.保留所有权利。

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