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Morphology and classification of the main stem Bagmati River, Central Nepal

机译:尼泊尔中部巴格马蒂河主干的形态和分类

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Rivers are significant geomorphic agents which can carry huge amounts of sediments and water from their catchments to depositional basins. Due course of flow they can bring various hazards such as flooding, inundation of flood plains, erosion of banks and trigger various slope movements. To understand nature and behavior of the Bagmati River, which is a perennial, storm and spring-fed, eight order river of central Nepal, the planiform morphological parameters of this river were analysed and river segments along the main stem stretches were classified into various stream-types, using topographic maps, aerial photographs, and satellite imageries. The Bagmati River is an 8th order perennial river. The Bagmati River basin comprises 39 sub-basins of 4th order and higher. The averages of meander wavelengths (L m ), meander belt width (W blt ), radius of curvature (R c ) and sinuosity (K) of the 7th order main stem Bagmati River are 598.27 m, 164.07 m, 252.35 m and 1.38, respectively. Similarly, the averages of L m , W blt , R c , and K of the 8th order main stem rivers are respectively, 496.77, 126.58 m, 286.13 m, and 1.55. All these parameters reflect fluctuating trends of variation along the downstream stretch. However, the portion of the 7th order river shows abrupt increase of Lm after the Bagmati River crosses the Main Boundary Thrust. The Rc also indicates slight increase in this region. The sinuosity reflects overall increase from the 7th to the 8th order rivers. This increase in sinuosity is attributed to the decrease in slope and competency of the river. There exists a moderate degree of correlation between K and W blt showing that the W blt of the Bagmati River tends to increase as the sinuosity increases. The stream segments of the Bagmati River fall on A-, B-, C-, G- and D-type rivers. All the segments of the Bagmati River, lying within the Kathmandu Valley and having substrate of the fluvio-lacustrine valley-fill sediments, fall on C-type stream because of low entrenchment and high width/depth ratio. Similarly, A-type streams are developed at segments which flow through the Tistung Formation of the granite terrain of the Lesser Himalaya most probably due to entrenched and gorged valley and high slope. Likewise, B- and G-type streams are developed in terrains of the Lesser Himalaya and the Sub-Himalaya. The B-type streams are moderately entrenched with sinuous to meandering and wide channels. The D-type stream segment which is a multi-thread channel is characteristically developed within the terrain of the Sub-Himalaya presumably due to the change in slope caused by thrusting, and greater input of sediments from the Siwaliks in relation to weak and loosely consolidated lithology. DOI: http://dx.doi.org/10.3126/bdg.v15i0.7415 Bulletin of the Department of Geology, Vol. 15, 2012, pp. 23-34
机译:河流是重要的地貌代理,可以将大量沉积物和水从其流域运送到沉积盆地。在流动过程中,它们会带来各种危害,例如洪水,洪泛平原泛滥,河岸侵蚀以及引发各种斜坡运动。为了了解巴格马提河的性质和行为,巴格马蒂河是尼泊尔中部的多年生,暴风雨和春季补给的八阶河,分析了该河的平面形态参数,并将主要干河段的河段分为不同的河流。类型,使用地形图,航拍照片和卫星图像。巴格马蒂河是多年生河流的第8阶。巴格马蒂河流域包括39个4阶及更高阶的流域。七阶主干巴格马蒂河的曲折波长(L m),曲折带宽度(W blt),曲率半径(R c)和弯曲度(K)的平均值分别为598.27 m,164.07 m,252.35 m和1.38,分别。同样,八阶主干河的L m,W blt,R c和K的平均值分别为496.77、126.58 m,286.13 m和1.55。所有这些参数反映了沿下游河段变化的波动趋势。然而,在巴格马蒂河越过主边界推力后,七阶河的部分显示Lm突然增加。 Rc也表明该区域略有增加。弯曲度反映了从第7级到第8级河流的总体增加。弯曲度的增加归因于河流的坡度和能力的下降。 K和W blt之间存在中等程度的相关性,这表明巴格马蒂河的W blt倾向于随着弯曲度的增加而增加。巴格马蒂河的河段分别位于A,B,C,G和D型河上。巴格马蒂河的所有河段,都位于加德满都谷地内,并以河湖相填谷沉积物为底,由于低的固结度和高宽深比,均落入C型河。同样,在小喜马拉雅花岗岩地段的Tistung组中流过的A型水流很可能是由于山谷根深蒂固的峡谷和高坡度所致。同样,在小喜马拉雅山和次喜马拉雅山的地形中发育出B型和G型流。 B型流中等程度地盘绕,蜿蜒曲折且宽阔。 D型流段是多线程通道,其特征是在喜马拉雅山脉的地形内发育,大概是由于推力引起的坡度变化,以及来自西瓦利克的沉积物相对弱且松散的固结增加了输入岩性。 DOI:http://dx.doi.org/10.3126/bdg.v15i0.7415地质学系简报2012年15月,第23-34页

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