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Effects of soil characteristics on moisture evaporation

机译:土壤特性对水分蒸发的影响

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Evaporation of water from soils is a three-stage process that has great significance in stress development in exposed geotechnical structures, generation of dusts that can cause environmental pollution and respiratory ailments, and dereliction of land by generating drought conditions. In this study, the factors that influence water evaporation from soil have been divided into two categories: external, referring to atmospheric conditions and interior, covering surficial soil characteristics and water content conditions. Particularly, five different sets of laboratory based evaporation tests were performed using cylindrical (150 mm diameter and 7-28 mm height) samples of clayey soil mixed with quartzite sands (three grainsize ranges: 0.2-0.5mm, 0.5-1.0mm, and 2.0-3.0 mm) in weight proportions ranging from 0% to 50% to evaluate the effects of soil texture, mineralogy and initial compactive state on its free water evaporation process at room temperature (20-22 degrees C) and relative humidity (50 +/- 2%) conditions. The evaporation tests were performed using mass loss measurements on soil samples to an accuracy of 0.01 g. Findings show that in the first stage of soil drying, water content decreases continuously with time while the ratio of actual to potential evaporation, E-a/E-p stays mostly stable. During the falling rate stage, both water content and EaEp decrease significantly. However, the water content varies but not significantly due to the low value of residual evaporation rate in the residual evaporation stage. Soil with lower sand content starts the falling rate stage at higher water content: 32.52% at added sand proportions of 0% versus 21.87%, 20.65%, 20.45%, 20.26% and 18.34% at added sand proportions of 10%, 20%, 30%, 40%, and 50% respectively. Larger soil sample thicknesses accelerate water evaporation rate and extend the constant evaporation rate stage. Soil particle size was not found to have significant impact on evaporation rate on per unit weight of added soil basis. The evaporation rate increases in direct proportionality to increase in initial water content and dry density.
机译:从土壤中蒸发水是一种三级过程,对暴露的岩土结构中的应力发育具有重要意义,可以引起环境污染和呼吸系统的粉尘,通过产生干旱条件脱落土地。在这项研究中,影响土壤水蒸发的因素已分为两类:外部,参考大气条件和内部,覆盖曲面土壤特性和水含量条件。特别地,使用圆柱形(150mm直径和7-28mm高)的粘土土壤混合用石英岩砂(三粒型范围:0.2-0.5mm,0.5-1.0mm和2.0)进行五种不同的实验室蒸发试验。 -3.0 mm)的重量比例从0%到50%,评估土壤质地,矿物学和初始合成状态在室温(20-22℃)和相对湿度(50 + /)其游离水蒸发过程中的影响 - 2%)条件。使用土壤样品上的质量损失测量进行蒸发试验,以精度为0.01g。结果表明,在土壤干燥的第一阶段,水含量随着时间的推移连续减少,而实际蒸发的比例,E-A / E-P大部分保持稳定。在下降率阶段,含水量和EAP都会显着降低。然而,由于残留蒸发阶段的残余蒸发速率低,水含量变化但不显着。具有下砂含量的土壤在较高的含水量下开始下降率阶段:加入砂比例为32.52%,增加21.87%,20.65%,20.6%,20.45%,20.26%和18.34%,加入砂比例为10%,20%, 30%,40%和50%。较大的土壤样品厚度加速水蒸发速率并延长恒定蒸发速率阶段。未发现土壤粒子尺寸对蒸发速率的每单位重量增加的土壤基础产生显着影响。蒸发速率导致初始含水量和干密度增加。

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