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A Spherical Steady-State Method to Measure Soil Thermal Conductivity

机译:一种测量土壤导热系数的球形稳态方法

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摘要

The reliable prediction of coupled heat and moisture transfer in three-phase soils involves authentic estimation of soil thermal conductivity. In the current work, a steady-state method was developed to measure soil thermal conductivity. Soil samples for two soils were packed in a plastic of 6.6 cm inner diameter and 3 mm thickness. A 130 Ohm resistor as a heat generator being connected to 5 V electricity source was located in the center of the ball. Three thermocouples were installed at the distances of 0.5, 1.5, and 2.5 cm from the center, respectively. After unpacking the ball, thermal conductivity was measured using the single probe method. The thermal conductivity values measured by both methods were almost the same in air dry soils; overall, the observed differences between the two methods were less than 3%. However, in the intermediate moisture content ranges, the values measured by the steady-state method were slightly lower than those obtained by the single probe method. Considering the effect of convective vapor flux due to thermal expansion of soil air in the single probe method, values measured with the new steady-state method may be more reliable.
机译:三相土壤中耦合热量和水分转移的可靠预测涉及土壤导热率的真实估计。在当前的工作中,开发了一种稳态方法来测量土壤导热率。两种土壤的土壤样品以6.6厘米的内径和3mm厚的塑料包装。作为连接到5V电源的发热器的130欧姆电阻位于球的中心。三个热电偶分别安装在0.5,1.5和2.5厘米的距离距离。在打开球后,使用单一探针法测量热导率。通过两种方法测量的导热率值在风干土壤中几乎相同;总体而言,两种方法之间观察到的差异小于3%。然而,在中间水分含量范围内,通过稳态方法测量的值略低于通过单一探针方法获得的值。考虑到由于在单一探针方法中的土壤空气热膨胀引起的对流蒸汽通量的影响,用新的稳态方法测量的值可能更可靠。

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