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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effects of sand-mulch thickness on soil evaporation during the freeze-thaw period
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Effects of sand-mulch thickness on soil evaporation during the freeze-thaw period

机译:砂覆厚度对冻融期间土壤蒸发的影响

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摘要

Control of evaporation from seasonally frozen soil is an important method for alleviating water shortages in arid and semi-arid areas. To investigate the inhibition of soil evaporation by sand and the major factors that influence soil evaporation, a series of field experiments with five sand-mulch thicknesses (0 cm, bare soil [BS], 1 cm [T1], 2 cm [T2], 3 cm [T3] and 4 cm [T4], with an average diameter of 1 mm) were conducted during the freeze-thaw period in Northern China. Soil evaporation characteristics in the three freeze-thaw stages were revealed and the major factors influencing soil evaporation were analysed using grey correlation analysis. The results showed that the cumulative soil evaporation decreased with increasing sand-mulch thickness during the freeze-thaw period, and only small differences in soil evaporation were observed between the T3 and T4 treatments. The reduction in soil evaporation under different sand-mulch thicknesses was 19.2-62.6% in the unstable freezing stage (P1), 2.0-28.3% in the stable freezing stage (P2) and 4.8-20.4% in the thawing stage (P3). In P1, solar radiation was a major factor influencing soil evaporation in all treatments and vapour pressure was a major factor in the sand-mulch treatments, and the influence of relative humidity on soil evaporation decreased in the T4 treatment. During the coldest P2, solar radiation was lowest so that relative humidity and wind speed became the more dominant influence factors on soil evaporation in all treatments, and surface soil water content was a major factor in the sand-mulch treatments. In P3, average air temperature and solar radiation were major factor influencing soil evaporation in all treatments and vapour pressure was a major factor in the BS and T1 treatments, whereas water surface evaporation was the major factor in the T2, T3 and T4 treatments. The results suggest that the addition of sand mulch in agricultural fields may be a beneficial practice to reduce water stress in arid and semi-arid areas.
机译:季节性冻土蒸发的控制是一种缓解干旱和半干旱地区水资源短缺的重要方法。为了探讨通过沙子蒸发土壤蒸发的抑制和影响土壤蒸发的主要因素,一系列砂覆厚度(0cm,裸土壤[BS],1cm [T1],2cm [T2]在中国北部的冻融期间进行了3cm [T3]和4cm [T4],平均直径为1mm)。揭示了三个冻融阶段的土壤蒸发特性,使用灰色相关分析分析了影响土壤蒸发的主要因素。结果表明,在冻融期间砂覆厚度增加,累积土壤蒸发降低,并且在T3和T4处理之间观察到土壤蒸发的小差异。在不稳定的冷冻阶段(P1)下的不同砂覆厚度下的土壤蒸发减少为19.2-62.6%,在稳定的冷冻阶段(P2)中2.0-28.3%,在解冻阶段的4.8-20.4%(P3)。在P1中,太阳辐射是影响所有治疗中土壤蒸发的主要因素,蒸气压是砂磨处理中的主要因素,并且在T4处理中相对湿度对土壤蒸发的影响降低。在最寒冷的P2期间,太阳辐射最低,使得相对湿度和风速成为所有治疗中土壤蒸发的主导影响因素,并且表面土壤含水量是砂覆土壤的主要因素。在P3中,平均气温和太阳辐射是影响所有治疗中土壤蒸发的主要因素,蒸气压是BS和T1处理中的主要因素,而水表面蒸发是T2,T3和T4处理中的主要因素。结果表明,农业领域的砂覆盖物可能是有益的实践,以减少干旱和半干旱地区的水分压力。

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