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Characterization of annual soil moisture response pattern on a hillslope in Bongsunsa Watershed, South Korea

机译:韩国奉顺寺流域山坡上年土壤水分响应模式的特征

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摘要

Annual time series for spatially distributed soil moisture measurements are useful for identifying water distribution control factors on a hillslope scale. In this intensive 1-year field study of soil moisture on a permanent channel initiation point hillslope, high resolution digital elevation models (DEMs) of surface and bedrock, were used to analyze time series of soil moisture spatial distributions for 19 terrain indices. In linear correlations, observed soil moisture patterns were best explained by local slope and distance to channel. In nonparametric analyses, contributing area and topographic wetness index provided significant correlations to soil moisture. Terrain based modeling hypotheses were tested on time scales between 2. h and 32. days. Soil moisture time series response patterns were classified into distinct patterns based on genetic calibration of recession models and hydrologic implications. Relatively high predictability of soil moisture via topographic characteristics is attributed to high-resolution soil moisture and terrain data.
机译:用于空间分布的土壤湿度测量的年度时间序列对于确定坡度尺度上的水分布控制因子很有用。在这项针对永久性通道起始点山坡的土壤水分的为期一年的深入研究中,使用了表面和基岩的高分辨率数字高程模型(DEM)分析了19个地形指数的土壤水分空间分布的时间序列。在线性相关中,观察到的土壤水分模式最好用局部斜率和到通道的距离来解释。在非参数分析中,贡献面积和地形湿度指数与土壤水分之间存在显着相关性。在2小时至32天之间的时间尺度上测试了基于地形的建模假设。基于衰退模型的遗传校正和水文意义,将土壤水分时间序列响应模式分为不同的模式。通过地形特征对土壤水分的相对较高的可预测性归因于高分辨率的土壤水分和地形数据。

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