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首页> 外文期刊>Geothermics >Optimization of geothermal interaction of a double U-tube borehole heat exchanger for space heating and cooling applications using Taguchi method and utility concept
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Optimization of geothermal interaction of a double U-tube borehole heat exchanger for space heating and cooling applications using Taguchi method and utility concept

机译:Taguchi方法和实用程序概念优化用于空间加热和冷却应用的双U型管井筒热交换器的地热相互作用

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摘要

Optimization results for thermal interaction of a double U-tube borehole heat exchanger (BHE) used along with a 5 ton capacity ground source heat pump system (GSHP), are discussed in this paper. Heat transfer from the BHE is computed using thermal resistance concept for space cooling and heating mode operations. The main objective of optimization is to achieve maximum heat extraction during space heating and maximum heat rejection during space cooling operations. For the purpose of optimization, eight control variables consisting of geometric parameters, thermo-physical parameters and mass flow rate are considered at three levels for a series connected double U-tube BHE of 120 m depth. For Taguchi method L-27 orthogonal array has been employed for the computation of heat transfer and S/N ratios for both modes of operations. Results obtained show that optimum values of 9270 W and 7210 W heat can be rejected to and extracted from the ground. Taguchi results are combined to obtain a single set of optimum levels of control variables using the utility concept. Mass flow rate of water in the BHE is found to be the most influential variable. For variation in the duration of cooling and heating mode operations, the optimum heat that could be rejected and absorbed becomes the same and equal to 6180 W for equal duration. It is observed that the heat transfer calculated from the utility concept is 11.11% and 42.86% less than those values calculated by Taguchi method for cooling and heating mode of operations respectively.
机译:本文讨论了与5吨容量地源热泵系统(GSHP)一起使用的双U型管井孔热交换器(BHE)的热相互作用的优化结果。来自BHE的热传递是使用热阻概念来计算的,用于空间制冷和制热模式操作。优化的主要目的是在空间加热过程中实现最大热量提取,在空间制冷操作过程中实现最大热量排放。为了优化,对于120 m深度的串联双U型管BHE,在三个级别上考虑了由几何参数,热物理参数和质量流量组成的八个控制变量。对于Taguchi方法,L-27正交阵列已用于两种操作模式的传热和S / N比的计算。获得的结果表明,可以将9270 W和7210 W的最佳热量排到地下或从地下提取。使用实用程序概念,将田口结果组合起来以获得一组最佳的控制变量水平。发现BHE中水的质量流速是影响最大的变量。对于制冷和制热模式运行持续时间的变化,在相同的持续时间内,可以被拒绝和吸收的最佳热量变为相同,等于6180W。可以看出,根据效用概念计算出的热传递分别比使用田口方法计算出的冷却和加热运行方式的热传递分别少了11.11%和42.86%。

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