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A review of the research on complex erosion by wind and water

机译:风水复合侵蚀研究综述

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Complex erosion by wind and water, which is also called aeolian-fluvial interactions, is an important erosion process and landscape in arid and semiarid regions. The effectiveness of links between wind and water process, spatial environmental transitions and temporal environmental change are the three main driving forces determining the geomorphologic significance of aeolian-fluvial interactions. As a complex interrelating and intercoupling system, complex erosion by wind and water has spatial-temporal variation features. The process of complex erosion by wind and water can be divided into palaeoenvironmental process and contemporary process. Early work in drylands has often been attributed to one of two schools advocating either an 'aeolianist' or a 'fluvialist' perspective, so it was not until the 1930s that the research on complex erosion by wind and water had been conducted. There are two obstacles restricting the research of complex erosion by wind and water. Firstly, how to transform in different temporal and spatial scales is still unsettled; and secondly, the research methodology is still immature. In the future, the mechanism and control of erosion, the complex soil erodibility in wind and water erosion will be the focus of research on complex erosion by wind and water.
机译:风和水的复杂侵蚀(也称为风沙相互作用)是干旱和半干旱地区的重要侵蚀过程和景观。风与水过程,空间环境转变和时间环境变化之间联系的有效性是决定风沙-河流相互作用的地貌意义的三个主要驱动力。作为复杂的相互联系和耦合系统,风和水的复杂侵蚀具有时空变化特征。风和水的复杂侵蚀过程可分为古环境过程和当代过程。干旱地区的早期工作通常归因于两所提倡“风沙论”或“潮吹主义”观点的学校之一,因此直到1930年代才进行了关于风和水的综合侵蚀的研究。有两个障碍限制了对风和水的复杂侵蚀的研究。首先,如何在不同的时空尺度上进行转换尚待解决。其次,研究方法还不成熟。今后,风蚀和水蚀的机理和控制,复杂的土壤易蚀性将成为风蚀和水蚀研究的重点。

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