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Experimental Investigation of Evaporation and Drainage in Wettable and Water-Repellent Sands

机译:湿润憎水砂土蒸发排水的实验研究

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摘要

This study presents experimental results on evaporation and drainage in both wettable and water-repellent sands whose surface wettability was artificially modified by silanization. The 2D optical and 3D X-ray computed tomographic imaging was performed during evaporation and the water retention during cyclic drainage and infiltration was measured to assess effects of wettability and initial wetting conditions. The evaporation gradually induces its front at the early stage advance regardless of the wettability and sand types, while its rate becomes higher in water-repellent Ottawa sand than the wettable one. Jumunjin sand which has a smaller particle size and irregular particle shape than Ottawa sand exhibits a similar evaporation rate independent of wettability. Water-repellent sand can facilitate the evaporation when both wettable and water-repellent sands are naturally in contact with each other. The 3D X-ray imaging reveals that the hydraulically connected water films in wettable sands facilitate the propagation of the evaporation front into the soil such that the drying front deeply advances into the soil. For cyclic drainage-infiltration testing, the evolution of water retention is similar in both wettable and water-repellent sands when both are initially wet. However, when conditions are initially dry, water-repellent sands exhibit low residual saturation values. The experimental observations made from this study propose that the surface wettability may not be a sole factor while the degree of water-repellency, type of sands, and initial wetting condition are predominant when assessing evaporation and drainage behaviors.
机译:这项研究提供了在可湿性和憎水性沙子中蒸发和排水的实验结果,它们的湿润性是通过硅烷化人工改性的。在蒸发过程中进行了2D光学和3D X射线计算机断层成像,并测量了循环排水和渗透过程中的保水率,以评估润湿性和初始润湿条件的影响。不管湿润性和沙子类型如何,蒸发都会在早期阶段逐渐诱导其锋面,而疏水渥太华沙子的蒸发速率则高于可湿性沙子。与渥太华砂相比,Jumunjin砂具有较小的粒径和不规则的颗粒形状,其蒸发速率与润湿性无关。当可湿性和疏水性沙土自然地相互接触时,疏水性沙土可促进蒸发。 3D X射线成像显示,可湿润的沙子中水力相连的水膜促进了蒸发前沿向土壤中的传播,从而使干燥前沿深入到土壤中。对于循环排水-渗透测试,可湿性和疏水性沙土最初都湿润时,保水性的变化相似。但是,当条件最初干燥时,憎水砂表现出较低的残留饱和度值。该研究的实验观察结果表明,在评估蒸发和排水性能时,表面的可湿性可能不是唯一的因素,而疏水性,沙的类型和初始润湿条件是主要因素。

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