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Assessment of design strategies in a ground source heat pump system

机译:评估地源热泵系统中的设计策略

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Among many new and renewable energy technologies, a ground source heat pump system has been declared as an energy efficient and an environmentally friendly system in meeting the thermal energy demands for residential and commercial applications. One major drawback for ground source heat pump system is the high initial cost and a relatively longer payback period of the system. In this study, a numerical analysis and an experimental investigation were carried out on the effects of the heat pump performance and the building load for a ground loop heat exchanger design. A decrease of heat pump unit fluid flow rate and an increment of COP for the heat pump unit resulted in the reduction of the ground loop heat exchanger size in the cooling mode. It was observed that reducing the peak load of building has the potential for reduction in the ground loop heat exchanger length. Matching the heat pump capacity with the building peak load variation, a decrease of 40% in the cooling and heating peak load resulted in a decrease of 44.5% and 69.2% in the total ground loop heat exchangers required in the cooling and heating mode, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:在许多新能源和可再生能源技术中,地源热泵系统已被宣布为满足住宅和商业应用对热能需求的节能高效且环保的系统。地源热泵系统的一个主要缺点是系统的高初始成本和相对较长的投资回收期。在这项研究中,对地循环换热器设计的热泵性能和建筑负荷的影响进行了数值分析和实验研究。热泵单元流体流速的减小和热泵单元的COP的增加导致在冷却模式下接地回路热交换器的尺寸减小。据观察,减少建筑物的峰值负荷有可能减少接地回路热交换器的长度。将热泵容量与建筑物的峰值负荷变化相匹配,制冷和制热峰值负荷降低40%,制冷和制热模式所需的总地面循环换热器分别降低44.5%和69.2%。 。 (C)2016 Elsevier B.V.保留所有权利。

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