Methodology of calculation the maximum flow rate of suspended sediments of mudflows (within Nakhchivan Autonomous Republic)

J. Mammadov
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Abstract

The main natural factors that have a significant impact on the maximum flow rate of suspended sediments are identified. The most universal of these factors is the maximum water flow rate, which creates an opportunity for the formation and development of mudflow processes, as well as determines the power of the mudflow. As a rule, the maximum flow rate of suspended sediments increases with increasing catchment area. At the same time, the larger the size of a river basin is, the greater the impact of various physical and geographical factors. Such complex factors include: Qmax – the maximum water flow rate, φ – the coefficient of natural over regulation of rivers, ϒ – the index of ploughness, Ψ – the forest cover index, İ – the slope of the catchment area. These factors are closely interrelated and interdependent, as mudflows are, to a certain extent, a mirror reflecting the influence of the main natural and anthropogenic factors. It seems to us that of the above factors determining the general background, the most universal ones are singled out for calculating the maximum flow rate of suspended sediments. We believe that there should also be a link between the values of the maximum flow rate of suspended sediments and the set of parameters that more clearly reflect the influence of natural factors. In this regard, in individual basins of any territory mudflows appear with different capacity. The relationships between the maximum flow rate of suspended sediments and the complex of natural factors reflect hydrological and geological-geomorphological conditions. Horizontal and vertical differentiation of mountain slopes with different exposures allowed us to identify this dependence in the form of 3 equations. The first two equations characterize the increase of maximum flow of suspended sediments in watershed and plowed slopes that lead to the maximum flow rate of suspended sediments. But forest cover and the coefficient of rivers flood natural overregulation lead to the lowest flow rate of suspended sediments. The third equation is characterized by the largest increase in water flow rate and in the average height of the catchment, which increases the maximum flow rate of suspended sediments, and the catchment area and the natural over regulation of rivers leads to its reduce.
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泥石流悬浮沉积物最大流速的计算方法(纳希切万自治共和国境内)
确定了对悬沙最大流速有显著影响的主要自然因素。这些因素中最普遍的是最大水流速率,它为泥流过程的形成和发展创造了机会,也决定了泥流的强度。随着流域面积的增大,悬浮物的最大流速也随之增大。同时,流域面积越大,各种自然地理因素的影响也越大。这些复杂的因素包括:Qmax——最大水流速率,φ——河流的自然过度调节系数,y——耕地指数,Ψ——森林覆盖指数,İ——集水区的坡度。这些因素是密切相关和相互依存的,因为泥石流在一定程度上反映了主要自然和人为因素的影响。在我们看来,在决定一般背景的上述因素中,挑选出最普遍的因素来计算悬浮沉积物的最大流速。我们认为,悬浮物最大流速的数值与更清楚地反映自然因素影响的一组参数之间也应该存在联系。在这方面,在任何地区的个别盆地中,泥石流的容量都是不同的。悬浮物最大流量与自然因素的复杂关系反映了水文和地质地貌条件。不同暴露程度的山坡的水平和垂直差异使我们能够以3个方程的形式确定这种相关性。前两个方程描述了流域和耕地坡地最大悬沙流量的增加,从而导致最大悬沙流量。但森林覆盖和河流洪水自然过调节系数导致悬沙流量最小。第三个方程的特点是水流速率和集水区平均高度增加最大,使最大悬浮泥沙流量增加,集水区面积和河流的自然过度调节导致最大悬浮泥沙流量减小。
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来源期刊
Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya
Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya Social Sciences-Geography, Planning and Development
CiteScore
1.10
自引率
0.00%
发文量
11
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