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Evaluation of interpolation models for rainfall erosivity on a large scale

机译:大规模降雨侵蚀力插值模型的评估

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Rainfall erosivity is an essential factor to describe the potential soil loss caused by rain, which can be expected to change in correspondence to climate changes. Spatial distribution pattern of rainfall erosivity is a guideline to erosion regional difference revelation and soil conservation regionalization. The focus of this article is to search an optimum spatial interpolation model for the mapping of rainfall erosivity on a large scale. In this research, average annual rainfall erosivity on China mainland is calculated through daily precipitation dataset from 711 weather stations over a period of 58 years (1951–2008). Precisions of 29 spatial interpolation models are compared including inverse distance weighting (IDW), radial basis function (RBF), kriging, cokriging (CK) and thin plate smoothing spline (TPS). Results indicate that three variables cubic TPS is the optimum model for spatial interpolation to rainfall erosivity on a large scale. Spatial characteristic of rainfall erosivity on mainland was analysed with the model employed. A increasing from northwest to southeast is identified and the highest annual rainfall erosivity occurs in the southwest area of Guangxi on the value of 25885 J· mm / (m2 · h).
机译:降雨侵蚀力是描述降雨引起的潜在土壤流失的重要因素,预计降雨会随着气候变化而变化。降雨侵蚀力的空间分布格局是侵蚀区域差异揭示和水土保持分区的指南。本文的重点是寻找一个最佳的空间插值模型,以大规模地映射降雨侵蚀力。在这项研究中,中国大陆的年平均降雨侵蚀力是通过58年(1951-2008)期间711个气象站的每日降水数据集计算得出的。比较了29种空间插值模型的精度,包括反距离权重(IDW),径向基函数(RBF),克里金法,协克里金法(CK)和薄板平滑样条(TPS)。结果表明,三个变量三次TPS是在大范围内对降雨侵蚀力进行空间插值的最佳模型。利用模型分析了大陆降雨侵蚀力的空间特征。从西北向东南逐渐增加,在西南地区最高的年降雨侵蚀力为25885 J·mm /(m 2 ·h)。

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