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Study on Sediment Reduction Effect by Soil retaining Dam with Different Storage Capacity Allocation Proportion in Dali River Watershed

机译:达利河流域不同储存能力分配比例土壤保持水坝泥沙减少效果研究

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Analysis and study were carried out by means of mathematical statistics on sediment reduction effect by soil retaining dam with different storage capacity allocation proportion in Dali river watershed of the Yellow River. The results indicate that, sediment reduction by large, middle and small soil retaining dam account for 80.1%, 14.6%, 5.3% of the total reduction; the sediment reduction benefit has reached its maximum since 1990s, amounting to 30.2%, with corresponding storage allocation proportion of 1.84:2.37:5.79.Dam and reservoir have obvious influence on the correlation between rainfall and sediment in the river watershed, sediment transport is reduced by 10 million ton corresponding to annual average flood season rainfall of 350mm in the watershed. Within the sediment reduction capability of soil retaining dam, the sediment reduction volume increase with more rainfall in the flood season, having the feature of "the more incoming sediment is, the more sediment reduction will be".
机译:通过在黄河流域的Dali河流域中的土壤保持水坝沉积物减少沉积物沉积物的数学统计进行分析和研究。结果表明,大型,中小土壤保留坝减少沉积物80.1%,14.6%,占总减少的5.3%;自20世纪90年代以来,沉积物减少效益已达到其最大值,达到30.2%,相应的储存分配比例为1.84:2.37:5.79.DAM和水库对河流流域的降雨和沉积物之间的相关影响,降低了沉积物运输在流域350mm的年度平均汛期降雨量,达到1000万吨。在土壤挡土坝的沉积物减少能力范围内,汛期降雨量的降雨量增加,具有“进入沉积物越多,沉积物越多”。

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