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Estimation of Evaporation from Drying Soil Column with Different Initial Soil Water Content by Maximum Soil Surface Temperature

机译:通过最大土壤表面温度估算不同初始土壤含水量的干燥土壤柱的蒸发量

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摘要

Modifying Ben-Asher's model,a simple model to estimate evaporation using only maximum and minimum surface temperature (MST) was proposed based on energy balance on the ground surface and supposing periodic sinusoidal change in soil surface temperature. Non-saline and saline soil (Silty loam) columns were adjusted at initial moisture condition between air dry to field water capacity. Daily evaporation (EJ) and soil temperature of the columns were measured for 23 days under field condition. At higher water content above15 % and19 % for non-saline loam and saline loam, respectively, the observed evaporation (E_(dobs)) and estimated evaporation (E_(dest)) were in a good agreement. However, the MST model overestimated evaporation at lower water content.Evaporation from the saline loam was somewhat smaller than that of the non-saline loam. The MST model can apply to estimate evaporation over alarge scale area under wet conditions, if it would be combined with an infrared satellite image.
机译:修改了Ben-Asher模型,提出了一个简单的模型,该模型仅基于最大和最小地表温度(MST)估算蒸发量,该模型基于地面上的能量平衡并假设土壤表面温度呈周期性正弦变化。在空气干燥至田间持水量之间的初始湿度条件下,将非盐碱土和盐渍土(淤泥质壤土)柱进行了调整。在田间条件下,每天测量柱的每日蒸发量(EJ)和土壤温度23天。当非盐壤土和盐壤土的水分含量分别高于15%和19%时,观测到的蒸发量(E_(dbs))和估计的蒸发量(E_(dest))吻合良好。然而,MST模型高估了低水分含量下的蒸发量。盐渍壤土的蒸发量比非盐渍壤土的蒸发量要小。如果将MST模型与红外卫星图像结合使用,则可用于估计潮湿条件下大面积区域的蒸发。

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