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Performance Analysis of a Ground-Source Heat Pump System Using Mine Water as Heat Sink and Source

机译:以矿井水为散热器和地源的地源热泵系统的性能分析

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This paper summarizes a case study of an innovative ground-source heat pump (GSHP) system that uses flooded mines as a heat source and heat sink. This GSHP system provides space conditioning to an existing 56,000ft~2 (5203 m~2) research facility, in conjunction with existing space heating and space cooling systems. Heat transfer performance and overall efficiency of the GSHP system were analyzed using the available measured data from January through July 2014. The performance analysis identified some issues with using mine water for cooling and the integration of the GSHP system with the existing steam heating system. Recommendations were made to improve the control and operation of the GSHP system. These recommendations, in conjunction with the available measured data, were used to predict the annual energy use of the system. Finally, the energy and cost savings and CO_2 emission reduction potential of the GSHP system were estimated by comparing them with a baseline scenario. This case study provides insights into the performance of and potential issues with the mine-water-source heat pump system, which is relatively underexplored compared to other GSHP system designs and configurations.
机译:本文总结了一个创新的地源热泵(GSHP)系统的案例研究,该系统使用淹没的地雷作为热源和散热器。该GSHP系统结合现有的空间加热和空间冷却系统,为现有的56,000ft〜2(5203 m〜2)研究设施提供空间调节。使用从2014年1月至2014年7月的可用测量数据分析了GSHP系统的传热性能和整体效率。性能分析确定了使用矿井水进行冷却以及GSHP系统与现有蒸汽加热系统集成的一些问题。提出了改善GSHP系统控制和操作的建议。这些建议与可用的测量数据一起用于预测系统的年度能耗。最后,通过将GSHP系统的能源和成本节省以及CO_2减排潜力与基准情景进行比较,进行了估算。本案例研究提供了对矿井水源热泵系统性能和潜在问题的见解,与其他GSHP系统设计和配置相比,该系统的开发还相对不足。

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