Experimental Investigation of Turbidity Flow in 90 Degree Bend with Mobile Bed

M. Mohammadi, M. Ghomeshi
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Abstract

Turbidity currents in the ocean and lakes are driven by suspended sediment. The vertical profiles of velocity and excess density are shaped by interaction between the current and bed as well as between the current and the ambient water. This paper presents 48 series of experiments in which saline gravity currents flow through a laboratory sinuous flume. flume contains three successive bends with three different relative curvature radiuses: R/B=2, 4 and 6, 8.5m length, 20cm width and 70cm height. Experiments performed by four discharges (0.7, 1, 1.5, 2 lit/s) and four concentrations (10, 15, 20, 25 gr/lit). ADV was used to record the local velocity. According to the results of experiments on the mobile bed, increasing the concentration of the incoming flow, the flow velocity of the fluid is also increased and, the maximum velocity occurs near the bed instead of the top of the current. The important point in the flow rate profiles is that the rate of increase in velocity depends on changes in the form of the bed due to the increase in concentration. By increasing concentrations of turbidity flow, the shear stress of the bed is also increased. Therefore, the rate of increase in velocity will occur by removing the bed forms and reducing the roughness and shear stress of the bed. Thus, increasing the concentration increases the power of the current, so at the beginning, the roughness and shear stress of the bed increased and then by removal of bed forms shear stress decreased.
90度弯曲流动床浊度流动的实验研究
海洋和湖泊中的浑浊流是由悬浮沉积物驱动的。流速和超密度的垂直剖面是由水流与河床以及水流与周围水体的相互作用形成的。本文介绍了盐水重力流通过实验室弯曲水槽的48个系列实验。水槽包含三个连续的弯道,具有三种不同的相对曲率半径:R/B= 2,4和6,8.5 m长,20cm宽,70cm高。实验采用四种放电(0.7、1、1.5、2 lit/s)和四种浓度(10、15、20、25 gr/lit)进行。用ADV记录局部速度。在移动床上进行的实验结果表明,随着来流浓度的增加,流体的流速也随之增大,并且最大流速发生在床层附近,而不是流的顶部。在流速剖面中,重要的一点是流速的增加速率取决于由于浓度增加而引起的床层形式的变化。随着浊度流浓度的增加,床层的剪切应力也随之增加。因此,速度的增加速率将通过去除床层形式和降低床层的粗糙度和剪切应力来实现。因此,浓度的增加增加了电流的功率,因此在开始时,床层的粗糙度和剪应力增加,然后通过去除床层形式剪应力减小。
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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