Analisis Profil Dasar Saluran Untuk Mengurangi Kecepatan Aliran Pada Pengalihan Sungai

D. Putranto, Agus Lestar Yuono, M. Effendi
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引用次数: 1

Abstract

In coal mining activities, it is often found that coal reserves are located in layers far from the land surface, and can be located far below the riverbed. In such conditions, the choice that is often taken is to move the river flow. Displacement of river flows in accordance with the regulations allowed has its own challenges to minimize the risks that will occur to the environment. The aim of the study is to design the basis of a new channel to reduce the speed of the river flow, so that the function and sustainability of river use as an ecological function is not disturbed. The method used is to analyze the origin of the river channel discharge and design the dimensions of the diversion river channel. The results obtained, with forecasts of a 50 year return peak flood period of 104.17 m3 / sec and with a divergence in the elevation of the diverting river channel of 18.9 m between the planned upstream and downstream along the 6,212.7 m, then to avoid massive scouring at channel base, a maximum flow rate of 10 m / sec and a minimum of 0.8 m / sec with a channel bottom of  0.0005% is recommended. For this reason the base profile of the canal is trapped at a distance of 500 m, with an elevation difference of 0.25 m. To maintain ecological sustainability, the dimension of the diversion river channel is maintained the same as the original river, b = 8m, H = 3.5m, and H : V = 1.5: 1.
分析河道的基本剖面,以减少河道改道的速度
在煤炭开采活动中,经常发现煤炭储量位于远离陆地表面的地层中,并且可以位于远低于河床的地方。在这种情况下,通常采取的选择是改变河水流量。按照允许的法规对河流进行排水量调整,在尽量减少对环境造成的风险方面也存在挑战。研究的目的是设计一个新的通道的基础,以降低河流的流速,使河流作为一种生态功能的功能和可持续性不受干扰。采用的方法是分析河道流量的来源,设计引水河道的尺寸。结果表明,50年再遇洪峰期预测为104.17 m3 / s,规划引流河道高程沿6212.7 m差18.9 m,为避免河道底部大面积冲刷,建议最大流量为10 m / s,最小流量为0.8 m / s,河道底面为0.0005%。由于这个原因,运河的基础轮廓被困在500米的距离上,高差为0.25米。为保持生态可持续性,引水河道尺寸保持与原河道相同,b = 8m, H = 3.5m, H: V = 1.5: 1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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