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Variation of Soil Physical Properties and Moisture Content Along Toposequences in the Arid to Semiarid Area

机译:干旱至半干旱地区土壤物理性质和水分含量的变化规律

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Accurate prediction and characterization of the spatial distribution and temporal variation of soil water is indispensable to optimize the use and management of land within dry areas, which suffer from limited arable land and water resources. The objective of this research is to examine the effect of hillslope position and characteristics on soil properties and variation of soil moisture in an arid to semiarid region. Five transects representing toposequences in the transitional Arid to Semiarid Mediterranean region of Jordan were selected to study the effect of hillslope position on soil properties and variation of soil moisture. Four sites representing different hillslope positions were chosen within each transect from the summit down to the toeslope. Soil profile, at each position, was described and sampled for laboratory analyses. Moisture content at different depths was monitored during the rainy season. The results indicated a systematic relationship between topographic characteristics (hillslope position, slope steepness, and curvature) and the particle size distribution. Soil erodibility was found to be indirectly related to topographic position as extrapolated from the consistent relationship with clay content. Soil moisture content was related to the topographic position, the variation in clay content, and vegetation condition. The topographic position was found to govern the flow of water from upper to lower positions, resulting in higher moisture availability at lower positions. The variations of other parameters were not only related to the topographic position of particular soil, but also to the characteristics of the soil at the upper positions, and to the sequence in which that soil is positioned in the toposequence. Understanding the distribution of soil properties and their relationship along the soil-landscape continuum, which is unique to this environment, should improve the prediction of soil properties and improve plans to better manage arid land.
机译:准确预测和表征土壤水的空间分布和时间变化对于优化干旱地区的土地利用和管理是必不可少的,因为干旱地区的耕地和水资源有限。这项研究的目的是研究干旱至半干旱地区山坡的位置和特征对土壤特性和土壤水分变化的影响。选择了约旦河沿岸干旱至半干旱地中海地区过渡带的五个断面来研究山坡位置对土壤性质和土壤水分变化的影响。从山顶到下坡,每个断面都选择了代表不同山坡位置的四个位置。描述每个位置的土壤剖面,并取样以进行实验室分析。在雨季期间监测不同深度的水分含量。结果表明地形特征(坡度,坡度和曲率)与粒径分布之间存在系统的关系。从与粘土含量的一致关系推断出土壤易蚀性与地形位置间接相关。土壤水分含量与地形位置,粘土含量的变化和植被状况有关。发现地形位置控制着水从上到下的流动,从而导致较低位置的水分利用率更高。其他参数的变化不仅与特定土壤的地形位置有关,而且与上部土壤的特性以及该土壤在后序中的排列顺序有关。理解土壤特性在土壤-景观连续体上的分布及其关系(这是这种环境所独有的),应该改善对土壤特性的预测,并改善对干旱土地的更好管理的计划。

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