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Comparison of influencing factors and level optimization for heating through deep-buried pipe based on Taguchi method

机译:基于Taguchi方法的深层管道加热影响因素和水平优化的比较

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摘要

For building heating systems with a deep-buried coaxial double-pipe, its heat transfer performance was studied using three evaluation parameters in five heating periods under five factors and the corresponding four levels. The three evaluation parameters are time-averaged heat transfer per meter Q(L-a), time-averaged performance parameter COP-a of heat pump unit, and five-year decay rate of heat exchange rate Rd-5. The five factors are buried pipe depth, water flow rate, inlet water temperature, geothermal gradient, and thermal conductivity of ground. The levels for each factor were selected in combination with practical problems. Sixteen sets of orthogonal simulation conditions (L(16)4(5)) with five factors and four levels were designed following the Taguchi method. Using signal-to-noise ratio and analysis of variance, Q(L-a), COP-a, and Rd-5 were evaluated under various factors and levels. The optimal combination of various factors for the best heat transfer performance of buried pipe and the contribution rate of each factor to the heat transfer performance of buried pipe were obtained.
机译:对于具有深埋的同轴双管子的加热系统,在五个因素下的五个加热期和相应的四个水平下使用三个评估参数研究其传热性能。三个评估参数是每米Q(L-A)的时间平均传热,热泵单元的时间平均性能参数COP-A,以及五年的热汇率RD-5衰减率。五种因素是埋地管深度,水流量,入口水温,地热梯度和地面的导热率。每个因子的水平与实际问题结合选择。在Taguchi方法下设计了具有五个因素和四个级别的十六套正交模拟条件(L(16)4(5))。在各种因素和水平下评估使用信噪比和方差分析,Q(L-A),COP-A和RD-5。获得了埋地管最佳传热性能的各种因素的最佳组合以及每个因素对埋地管的传热性能的贡献率。

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