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One-dimensional velocity profiles in open-channel flow with intense transport of coarse sediment

机译:粗沙强烈迁移的明渠水流一维速度剖面

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The paper deals with laboratory experiments in open-channel flows with intense transport of model sediment (coarse plastic particles) in our new tilting flume. The major objectives of the paper are: 1. to discuss applied measuring methods, 2. to analyze measured velocity profiles. Ad 1. A profile of the longitudinal component of local velocity was measured across the vertical axis of symmetry of a flume cross section using three independent measuring methods (Prandtl tube, Ultrasonic Velocity Profiler, Acoustic Doppler Velocity Profiler). Due to strong stratification of the flow in the flume, parts of the profile are measured in regions of very different local concentrations of sediment (from virtually zero concentration to the maximum concentration of bed packing). This makes measurements complicated, particularly for ultrasonic measuring techniques. Profiles measured using the different techniques are evaluated and mutually compared. Ad 2. The layered character of the flow causes that shapes of velocity profiles tend to be different in the transport layer (rich on transported particles) above the bed and in the solids-free region between the top of the transport layer and the water surface. Shapes of the profiles are analyzed. Particular attention is paid to the logarithmic profile in the solids-free region of the flow cross section. The profile can be handled using the law of the hydraulically-rough wall. In the law, the eroded top of the bed with the transport layer is supposed to be the rough boundary and appropriate values are sought for its variables.
机译:本文涉及在明渠中流动的实验室实验,其中包括在我们的新型倾斜水槽中大量运输模型沉积物(粗塑料颗粒)。本文的主要目标是:1.讨论应用的测量方法,2.分析测得的速度曲线。广告1.使用三种独立的测量方法(普朗特管,超声波速度剖面仪,声学多普勒速度剖面仪)测量了整个横截面的垂直对称轴上局部速度纵向分量的轮廓。由于水流的强烈分层,因此在局部沉积物浓度非常不同的区域(从几乎为零的浓度到最大床层装填浓度)测量剖面的一部分。这使测量变得复杂,尤其是对于超声测量技术而言。使用不同技术测量的轮廓将进行评估并相互比较。 Ad2。流动的分层特征导致速度分布图的形状在床上方的运输层(富含被运输的颗粒)和运输层顶部与水面之间的无固体区域中趋于不同。分析轮廓的形状。特别注意流动横截面的无固体区域中的对数轮廓。可以使用液压粗糙壁的定律处理轮廓。在法律上,带有运输层的被侵蚀的床顶被认为是粗糙的边界,并为其变量寻求适当的值。

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