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Effect of the Initial Soil Moisture Content on the Spatial Distribution of the Water Retention

机译:土壤初始含水量对保水空间分布的影响

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The initial soil moisture content affects the water flow and solute transport through the vadose zone, but researchers are in disagreement about the extent and nature of its effects. Better understanding of the initial moisture effect on the water movement will help to prevent groundwater contamination and increase crop production by improving the efficiency of water use in irrigation practice. Therefore, in this study, the effect of the initial moisture content on the spatial distribution of the water retention was investigated in the field. A total of 4 cm of water was applied to duplicate plots with each of three initial moisture conditions within 2 h using a rainfall simulator. Following the application and a 2-h redistribution period, 100 soil samples were taken from different depths of each plot using a grid sampling system to be analyzed for their gravimetric water content in the laboratory. Statistical and geostatistical analyses were performed to analyze the spatial structure of the collected data. The results showed that the preferential flow was more evident in the case of the dry initial soil water content than for the two wetter initial conditions. Both the classical and geostatistical analyses supported that the overall water retention was uniformly distributed throughout the profile except at 20-30 cm, where the coefficient of variation and the percent nugget to total semivariance ratio were high, indicating some degree of preferential flow through large pores (macropores). These results suggest that similar studies should be conducted on different field soils under more different initial moisture conditions so that the effect of the macropores on the water flow and chemical transport can be better understood.
机译:最初的土壤含水量会影响通过渗流带的水流和溶质的输送,但研究人员对其影响的程度和性质存在分歧。更好地了解初始水分对水运动的影响,将通过提高灌溉实践中的用水效率来帮助防止地下水污染并提高作物产量。因此,在本研究中,在野外研究了初始水分含量对保水率空间分布的影响。使用降雨模拟器,在2 h内将总共4 cm的水施加到三个初始湿度条件中的每个条件下的重复样点上。施用和2小时重新分配期后,使用网格采样系统从每个样地的不同深度采集了100个土壤样品,以在实验室中分析它们的重量水含量。进行统计和地统计学分析以分析所收集数据的空间结构。结果表明,在干燥的初始土壤水分条件下,优先流动比在两个潮湿的初始条件下更为明显。古典分析和地统计学分析都支持,除了在20-30 cm处,总保水量均匀分布在整个剖面上,在20-30 cm处,变异系数和块金与总半变异率的百分比都很高,表明一定程度的优先流动通过大孔(大孔)。这些结果表明,应该在更多不同的初始湿度条件下对不同的田间土壤进行类似的研究,以便可以更好地理解大孔对水流和化学迁移的影响。

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