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黄土高原地区鱼鳞坑坡面侵蚀演化过程及水力学特征 被引量:12
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作者 郭慧莉 孙立全 +2 位作者 吴淑芳 李宜坪 张永东 《土壤学报》 CAS CSCD 北大核心 2017年第5期1125-1135,共11页
为明确鱼鳞坑坡面抗侵蚀演化过程及其水流水力学特性,采用间歇性人工模拟降雨实验,对鱼鳞坑坡面水流水力学特性以及阻力规律进行了系统分析。结果表明:(1)鱼鳞坑坡面侵蚀演化过程表现为:雨滴溅蚀—片蚀—股流冲刷—跌坑—细沟侵蚀—下... 为明确鱼鳞坑坡面抗侵蚀演化过程及其水流水力学特性,采用间歇性人工模拟降雨实验,对鱼鳞坑坡面水流水力学特性以及阻力规律进行了系统分析。结果表明:(1)鱼鳞坑坡面侵蚀演化过程表现为:雨滴溅蚀—片蚀—股流冲刷—跌坑—细沟侵蚀—下切侵蚀—溯源侵蚀—崩塌。(2)随着降雨历时的增加,由于鱼鳞坑的层层拦截与蓄满,其下方的坡面径流流速、水深均呈波动式增长趋势,坑内出现旋涡,坡面径流呈现断续股流。降雨累积历时为58 min左右,总降雨量达到87 mm时,鱼鳞坑侵蚀量急剧增加,拦蓄径流作用失效。(3)五场降雨过程中,上坡和中坡水流流态为层流,下坡由于鱼鳞坑蓄满后径流出现波动,水流流态由层流变为紊流且时而为缓流时而为急流。(4)鱼鳞坑坡面水流阻力来源于降雨阻力、颗粒阻力、形态阻力叠加,在整个降雨过程中阻力总和呈下降趋势;其中,受地形高低起伏、地表糙度的影响,形态阻力一直居于主导地位。 展开更多
关键词 鱼鳞坑坡面 间歇性降雨 侵蚀演化过程 水力学特性
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Three-dimensional numerical simulation of glacial trough forming process 被引量:2
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作者 YANG ShaoHua SHI YaoLin 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第9期1656-1668,共13页
The glacial trough is a common glacier erosion landscape, which plays an important role in the study of glacier erosion processes. In a sharp contrast with the developing river, which is generally meandering, the deve... The glacial trough is a common glacier erosion landscape, which plays an important role in the study of glacier erosion processes. In a sharp contrast with the developing river, which is generally meandering, the developing glacial trough is usually wide and straight. Is the straightness of the glacial trough just the special phenomenon of some areas or a universal feature? What controls the straightness of the glacial trough? Until now, these issues have not been studied yet. In this paper, we conduct systematic numerical models of the glacier erosion and simulate the erosion evolution process of the glacial trough. Numerical simulations show that:(1) while the meandering glacier is eroding deeper to form the U-shaped cross section, the glacier is eroding laterally. The erosion rate of the ice-facing slope is bigger than that of the back-slope.(2) The smaller(bigger) the slope is, the smaller(bigger) the glacier erosion intensity is.(3) The smaller(bigger) the ice discharge is, the smaller(bigger) the glacier erosion intensity is. In the glacier erosion process, the erosion rate of the ice-facing slope is always greater than that of the back-slope. Therefore, the glacial trough always develops into more straight form. This paper comes to the conclusion that the shape evolution of the glacial trough is controlled mainly by the erosion mechanism of the glacier. Thereby, the glacial trough prefers straight geometry. 展开更多
关键词 glacial trough erosion action numerical simulation finite element method
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