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Optimum design of horizontal ground-coupled heat pump systems using spiral-coil-loop heat exchangers

机译:使用螺旋线圈循环换热器的水平地面耦合热泵系统的优化设计

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This paper deals with an optimum design of horizontal ground heat pump systems for spiral-coil-loop heat exchangers. A three dimensional numerical analysis model simulating the thermal behavior of a horizontal spiral-coil-loop heat exchanger was developed, and the accuracy of the model was verified through indoor thermal response tests. After that, a total of 160 parametric studies were conducted using numerical simulation models in order to grasp the degree of effects that key input parameters used in the model would have on the output. Then, an optimum design condition for horizontal ground coupled heat pump system was suggested using several economic analysis tools. Economic analysis factors, such as internal rate of return, savings to investment ratio, and simple payback period, show that certain design conditions (coil pitch: 0.08 m, setting depth: 2.5 m, circulating fluid velocity: 0.7 m s(-1)) provide the most economic feasibility. However, this condition also varies with the unit cost of operation and initial investment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文针对螺旋线圈循环换热器的水平地面热泵系统进行了优化设计。建立了模拟水平螺旋-线圈-循环换热器热行为的三维数值分析模型,并通过室内热响应试验验证了模型的准确性。之后,使用数值模拟模型进行了总共160项参数研究,以掌握模型中使用的关键输入参数对输出产生的影响程度。然后,使用几种经济分析工具,提出了水平接地耦合热泵系统的最佳设计条件。内部收益率,储蓄投资比率和简单的投资回收期等经济分析因素表明,某些设计条件(线圈螺距:0.08 m,设定深度:2.5 m,循环流体速度:0.7 ms(-1))提供最经济的可行性。但是,该条件也随单位运营成本和初始投资而变化。 (C)2015 Elsevier Ltd.保留所有权利。

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