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Effects of gullies on space-time patterns of soil moisture in a semiarid grassland

机译:沟壑对半干旱草原土壤水分时空格局的影响

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Gullies are pervasive topographic features in many regions, and they can represent an important form of land degradation. Soil moisture is expected to play a significant role in the gullying process because it affects the health of the vegetation cover and the shear strength of the soil. However, the interaction of soil moisture with the gully topography remains poorly understood. The primary objectives of this study are to determine whether the development of a gully affects the spatial pattern of near-surface (0-10. cm) soil moisture and to determine whether the soil moisture dynamics differ between the gully bottoms, sidewalls, and uplands. Three study sites in southeastern Colorado were intensively monitored. One site is ungullied, while the other two sites each contain a gully. Hourly soil moisture observations were collected using time domain reflectometry probes installed along four transects at each site. Each transect contains 6-8 probes that are positioned at the mid-points between breakpoints in topographic slope. Overall, the occurrence of a gully was observed to have little impact on the spatial average soil moisture within the study sites, but it does promote spatial variability in soil moisture. Gully bottoms have lower wind speeds and thus lower reference evapotranspiration rates, and they tend to be wetter than the uplands. Gully sidewalls tend to be drier due to rapid drainage during and after precipitation events. Differences in the insolation of gully sidewalls are also associated with differences in their soil moisture.
机译:沟壑是许多地区普遍存在的地形特征,可以代表土地退化的一种重要形式。由于土壤水分会影响植被的健康状况和土壤的剪切强度,因此有望在沟壑过程中发挥重要作用。但是,土壤水分与沟渠地形的相互作用仍然知之甚少。这项研究的主要目的是确定沟渠的发育是否影响近地表土壤水分(0-10。cm)的空间格局,并确定沟渠底部,侧壁和高地之间土壤水分动态是否有所不同。对科罗拉多州东南部的三个研究地点进行了严格监控。一个站点是空洞的,而其他两个站点各有一个沟壑。使用沿每个站点的四个样条线安装的时域反射计探头每小时收集一次土壤湿度观测值。每个样条包含6-8个探针,这些探针位于地形坡度的断点之间的中点。总体而言,观察到沟壑的发生对研究地点的空间平均土壤水分几乎没有影响,但确实促进了土壤水分的空间变异性。沟谷底部的风速较低,因此参考蒸散量较低,并且它们往往比高地湿润。由于降水期间和之后的快速排水,沟壁的侧壁趋于干燥。沟渠侧壁日照的差异也与土壤水分的差异有关。

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