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Morphologic Response of a Stream Channel to Extensive Sand Mining

机译:河道对大范围采砂的形态响应

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This study assesses the impact of sand mining on the morphology of Kano River channel. The river channel was divided into three sites consisting of site upstream of active mining site, active mining site and downstream of active mining. The upstream site was assumed to be unaffected by the mining activity. The mining site was an area of current active mining. The downstream area is downstream of mining site but with no mining activity. A morphometric assessment of 50 sample points in each of the three sites from a cross section was made where width of the channel was measured from one end of the channel to the other horizontally on transect; depth was measured from the lowest point in the flood plain to the top of the bank; channel slope was determined following standard survey technique from points located from the top of one riffle to the top of another within the entire cross section. One-way ANOVA between groups was employed to test the differences between the measured mophometric variables in the three sites. The results revealed that mining activities has resulted in modification of the channel with great variations in depth between the sites (p<0.01) with the mining site having 7.5 m the upstream site 2.3 m and downstream 2.5 m deeper than the average channel depth; width also vary between the sites (p<0.01); mining site has a mean width of 110 m, downstream site, 75 m and 50 m in the upstream site. Field observation indicate that downstream pools are longer but upstream pools are deeper, expected spacing of riffles given as five to seven stream widths was not observed but riffle interval was however as expected in the mining site.
机译:这项研究评估了采砂对卡诺河河道形态的影响。河道被分为三个地点,分别是活跃采矿场上游,活跃采矿场和活跃采矿下游。假定上游站点不受采矿活动的影响。采矿场是当前活跃采矿的区域。下游区域是采矿场的下游,但没有采矿活动。从横截面的三个位置中的每一个位置进行形态计量学评估,在横截面上测量从通道一端到另一端水平的通道宽度;深度是从洪泛区的最低点到河岸顶部测量的;根据标准勘测技术,在整个横截面中,从一个浅滩顶部到另一个浅滩顶部的点确定河道坡度。组之间的单向方差分析用于测试三个位置中测得的计量学变量之间的差异。结果表明,采矿活动导致河道的改造,使矿场之间的深度发生了很大的变化(p <0.01),矿场的上游站点7.5 m,比平均河道深度深2.3 m,下游2.5 m。部位之间的宽度也不同(p <0.01);采矿站点的平均宽度为110 m,下游站点的平均宽度为75 m,上游站点的平均宽度为50 m。现场观察表明,下游矿池更长,但上游矿池更深,由于没有观察到五到七个溪流宽度,因此浅滩的预期间隔没有观察到,但是在采矿场中,浅滩间隔却与预期的一样。

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