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Effect of vertical ground temperature distribution on parameter estimation of in-situ thermal response test with unstable heat rate

机译:垂直地面温度分布对不稳定热率原位热响应试验参数估计的影响

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This paper proposed a parameter estimation method for identifying ground thermal conductivity and volumetric heat capacity using the Nelder-Mead Simplex search algorithm (NMSA) in in-situ thermal response test (TRT) with unstable heat rate, the duct storage system (DST) model for borehole heat exchanger (BHE) was applied to do with variable heat rate and the vertical ground temperature distribution in initial soil temperature. The parameter estimation was carried out using the in-situ TRT data in Qingdao, and the effect of vertical ground temperature distribution on estimated results was compared and analyzed. The relative error of estimated ground thermal conductivity using the regression temperature fitted by the test temperatures from the 5th m depth to the 120th m depth decreased by about 9.1% than that corresponding to the integral mean temperature calculated by test temperatures from the 5th m depth to the 120th m depth. However, the estimated volumetric heat capacity is hardly sensitive to initial soil temperature, and the relative errors are not higher than 2% no matter how to do with initial soil temperature. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种使用Nelder-Mead Simplex搜索算法(NMSA)在热率不稳定的现场热响应测试(TRT)中识别地面导热系数和体积热容量的参数估计方法,以及风管存储系统(DST)模型井筒换热器(BHE)的应用是为了在初始土壤温度下以可变的热速率和垂直的地面温度分布进行处理。利用青岛地区的原位TRT数据进行参数估算,比较并分析了垂直地面温度分布对估算结果的影响。使用由第5 m深度至第120 m深度的测试温度拟合的回归温度估算的地面导热系数的相对误差比由第5 m深度至第120 m深度的测试温度计算的积分平均温度所对应的相对误差降低了约9.1%。 120米深。然而,估算的体积热容对初始土壤温度几乎不敏感,并且无论如何处理初始土壤温度,其相对误差均不高于2%。 (C)2019 Elsevier Ltd.保留所有权利。

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