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Hydro-thermal performance of multilayer capillary barriers in arid lands

机译:干旱区多层毛细管屏障的水热性能

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In this study, a capillary barrier system was designed and tested for an arid land environment. To simulate arid land conditions of high temperature and sub-irrigation systems. the barrier was subjected to thermal and hydraulic gradients in opposite directions; to test the barrier system under these severe conditions, an experimental apparatus was designed and fabricated. The multilayer capillary barrier consisted of three layers made of silica sand, a mixture of sand and bentonite in equal portions, and a mixture of clay (25 percent) and aggregate (75 percent). Several one dimensional coupled heat and moisture tests were performed. Temperature variations along the thickness of the barrier were recorded as a function of time, and at the end of each test, the barrier was sliced into small sections, for the determination of volumetric water content as a function of distance from the heat source. The experimental results were discussed in view of the barrier's intended purpose of its ability to store moisture for long time durations. Coupled heat and moisture flow equations were developed and solved numerically via a finite difference method. Diffusivity parameters were calculated by using experimental results, a numerical model, and Powell's conjugate directions method of nonlinear optimization. The model was calibrated and the results were discussed. Good agreement between calculated and experimental results was obtained.
机译:在这项研究中,针对干旱土地环境设计并测试了毛细管屏障系统。模拟干旱和高温土地灌溉系统。屏障在相反的方向上经受了热梯度和水梯度;为了在这些恶劣条件下测试屏障系统,设计并制造了一个实验装置。多层毛细管阻隔层由三层硅砂,等份的砂和膨润土的混合物以及粘土(25%)和骨料(75%)的混合物组成。进行了几个一维热和湿耦合测试。记录沿隔板厚度的温度变化随时间的变化,在每次测试结束时,将隔板切成小段,以测定体积水含量随距热源距离的变化。鉴于屏障的预期目的是长期储存水分,讨论了实验结果。建立了热湿流耦合方程,并通过有限差分法进行了数值求解。通过使用实验结果,数值模型和非线性优化的鲍威尔共轭方向方法来计算扩散系数。对该模型进行了校准并讨论了结果。计算结果与实验结果之间取得了很好的一致性。

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