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An experimental study of coupled heat and moisture transfer in soils at high temperature conditions for a medium coarse soil

机译:中等土壤条件下高温条件下土壤水热传递耦合的实验研究

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A study of one-dimensional heat and moisture transfer within a vertical soil column was conducted experimentally. An experimental soil cell made of stainless-steel tube was exposed to differential heating by sandwiching it between two differentially-heated plates for studying heat and moisture transfer in the soil column at different temperature levels and temperature differences. The main objective of the experimental study was to investigate heat and moisture transfer characteristics in a medium coarse soil at temperatures greater than 40 degrees C up to 90 degrees C. In this paper, the results are divided into two parts. In the first part, the results of heat transfer in dry soil are presented and discussed. The purpose was to investigate temperature distributions and heat gains/losses at the steady-state conditions along the soil cell at the various temperature levels. In the second part, the results of heat and moisture transfer in wet soil are presented and discussed. In this part, the transient temperatures, moisture contents and thermal properties along the soil column were obtained using the heat pulse technique. A loamy sand with a porosity and an initial water content of 0.40 and 0.26 m(3)/m(3) (or saturation degree of 65%), respectively, was used in the study. The results of the case with the largest temperature difference of 65 degrees C (or overall temperature gradient of 440 degrees C/m) and the mean temperature of 55 degrees C are presented in detail. The highest temperature gradient of 1450 degrees C/m was recorded at the top of the soil column during the test, driving downward a moisture flux as high as 3 g/s.m(2) when the soil was at temperature of 51 degrees C and saturation degree of 40%. Under these conditions, the thermal vapor diffusion is the main mechanism for the moisture flux. (C) 2019 Elsevier Ltd. All rights reserved.
机译:实验研究了垂直土壤柱内的一维热湿传递。将不锈钢管制成的实验土壤池通过将其夹在两块差热板之间而受到差热,以研究不同温度水平和温度差下土壤柱中的热和水分传递。实验研究的主要目的是研究温度高于40摄氏度到最高90摄氏度的中等粗糙土壤中的热和水分传递特性。在本文中,结果分为两部分。在第一部分中,介绍并讨论了干燥土壤中的传热结果。目的是研究在各种温度水平下,沿土壤细胞在稳态条件下的温度分布和热量得失。在第二部分中,介绍并讨论了湿土壤中的热量和水分传递的结果。在这一部分中,使用热脉冲技术获得了沿土壤柱的瞬态温度,水分含量和热性质。在研究中,分别使用孔隙率和初始含水量分别为0.40和0.26 m(3)/ m(3)(或饱和度为65%)的壤土砂。详细介绍了最大温差为65摄氏度(或总温度梯度为440摄氏度/米)和平均温度为55摄氏度的情况的结果。在测试期间,在土壤柱的顶部记录了最高温度梯度1450摄氏度/米,当土壤处于51摄氏度和饱和温度时,向下推动了高达3 g / sm(2)的水分通量度40%。在这些条件下,热蒸汽扩散是水分流的主要机理。 (C)2019 Elsevier Ltd.保留所有权利。

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