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Validation of analytical algorithms for the estimation of soil thermal properties using de Vries model

机译:使用de Vries模型估算土壤热性质的分析算法的验证

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摘要

Soil thermal conductivity, and diffusivity together with the damping depth of soil temperature computed using Amplitude decay, Phase shift, Harmonic (amplitude based and phase based), Arctangent, Logarithmic and conduction-convection algorithms were compared with those obtained from de Vries model. The amplitude decay algorithm yielded the most reliable values of the soil thermal properties of all the estimation methods with mean absolute error (MAE), root mean squared error (RMSE) and relative maximum error (RME) of 0.04, 0.05 and 5.63% respectively for soil thermal conductivity. Harmonic algorithm (using the amplitude of the first 4 harmonics) gave values of the soil thermal properties next to the amplitude decay algorithm with MAE, RMSE and RME values 0.41, 0.44 and 47.84% respectively for soil thermal conductivity. Higher error values were associated with the other algorithms. The Arctangent algorithm gave the most deviated values of soil thermal properties with RME of 156.83% for soil thermal conductivity. For soil moisture content between 0.168 and 0.189 (> critical soil moisture content) the values of the soil thermal properties of the loamy sand decreased with increasing soil moisture, while they increased with increasing soil aeration.
机译:将土壤热导率和扩散率以及土壤温度的阻尼深度(使用幅度衰减,相移,谐波(基于幅度和相位),反正切,对数和传导对流算法计算)与从de Vries模型获得的算法进行了比较。振幅衰减算法得出所有估算方法中土壤热特性的最可靠值,其平均绝对误差(MAE),均方根误差(RMSE)和相对最大误差(RME)分别为0.04、0.05和5.63%土壤热导率。谐波算法(使用前四个谐波的幅度)给出了土壤热特性的值,其次是幅度衰减算法,其中土壤热导率的MAE,RMSE和RME分别为0.41、0.44和47.84%。较高的误差值与其他算法相关。 Arctangent算法给出了土壤热特性的最大偏差值,其土壤热导率的RME为156.83%。当土壤水分在0.168至0.189(>临界土壤水分)之间时,壤土的土壤热特性值随土壤湿度的增加而降低,而随着土壤通气量的增加而升高。

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