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首页> 外文期刊>Journal of Hydrology >The impact of water vapor diodes on soil water redistribution
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The impact of water vapor diodes on soil water redistribution

机译:水蒸气二极管对土水再分配的影响

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Highlights ? A water vapor diode (WVD) concept is proposed. ? The WVD can increase or decrease soil water storage in selected soil layers. ? The performance of WVD is related to the configuration of WVD. Abstract Diurnal soil temperature fluctuations are the prime cause for subsurface water vapor fluxes. In arid and semi-arid areas, water vapor flux is the dominant means of soil water redistribution. The directions of water vapor flux shift from upward to downward diurnally following the variations of the soil thermal gradient. A water vapor diode (WVD), acting as a check valve, allows water vapor flux in one direction but heat flux in both directions. By installing a subsurface WVD, it is possible to impose direction-controlled vapor fluxes, and WVDs can be used to accumulate or remove water in particular soil layers. The egg carton shape, with pores situated at selected peaks and valleys, is a possible design for WVDs. In this study, we provide the concept and the properties of the ideal WVDs, and we discuss four WVD configurations to control soil water redistribution. Numerical simulation is used to evaluate the impacts of the ideal WVDs. The results indicate that WVDs can increase local water contents by at least 0.1 m 3 m - 3 in a silt loam. For a fixed initial water and thermal condition, the effect of WVDs is related to the deployment depth and distance between two consecutive WVDs. WVDs can be used to manipulate soil water redistribution and accumulate water at specific depths to support plant growth. The numerical simulation results indicate the potential effectiveness of the ideal WVDs, and field tests should be performed to determine their function under specific soil conditions.
机译:<![CDATA [ 亮点 水蒸气二极管(WVD)的概念提出了 该WVD可以增加或减少土壤水分存储在选定的土层 <?CE:对ID = “P0015” 视图= “所有”> WVD的性能与WVD的结构 < / CE:抽象秒> 抽象 日土壤温度波动是用于地下水蒸气通量的根本原因。在干旱和半干旱地区,水汽通量是土壤水分再分布的主要手段。水汽通量移从向上到向下昼夜后土壤的热梯度的变化方向。水蒸气二极管(WVD),用作止回阀,允许水蒸气通量在两个方向中的一个方向,但热通量。通过安装地下WVD,可以施加可控制方向的蒸气通量,和WVDs可用于累积或尤其土层除去水。鸡蛋纸盒的形状,具有位于选定的峰和谷的孔,是用于WVDs的可能设计。在这项研究中,我们提供的概念和理想WVDs的性质,并讨论4种WVD配置,以控制土壤水分再分配。数值模拟是用来评估理想WVDs的影响。结果表明,WVDs可以由至少0.1 增加局部水含量 3 - 3 < / MML:MROW> 在粉砂壤土。对于一个固定的初始水和热条件,WVDs的效果与两个连续WVDs之间部署的深度和距离。 WVDs可以用来操纵土壤水分再分配和积水在特定的深度,以支持植物生长。数值模拟结果表明理想WVDs的潜在效力,和现场测试应当执行,以确定特定的土壤条件下,它们的功能

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