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Conditional Turbulence Characteristics in Water-Worked and Screeded Gravel-Bed Flows

机译:水工和熨平板砂砾层流中的条件湍流特性

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The conditional double-averaged streamwise velocity, spatially averaged (SA) turbulence and dispersive quantities in flows over a water-worked gravel bed (WGB), and a screeded gravel bed (SGB) were studied. The effects of the temporal and advective bursting events on the WGB and SGB flows were analyzed by measuring the instantaneous flow field using a particle image velocimetry system. The flow conditions (flow rate and flow depth) were maintained the same in both the beds. The SA turbulence and dispersive quantities studied were the SA Reynolds shear and normal stresses, SA turbulent kinetic energy fluxes, dispersive shear and normal stresses, and dispersive kinetic energy fluxes. In experimental beds, owing to the water work, the WGB exhibited a spatially organized roughness structure as compared with a randomly organized roughness structure in the SGB, resulting in a higher WGB roughness than the SGB one. Analysis of the temporal bursting events revealed that the conditional SA turbulence quantities corresponding to the temporal sweeps were dominant within the roughness layer, whereas those corresponding to the temporal ejections govern above the roughness layer. Analysis of the advective bursting events indicated that the dispersive quantities involving advective sweeps were the key mechanism within the roughness layer, whereas those involving advective ejections were the prevailing mechanism in the main flow layer. The comparison of the results in the WGB and SGB flows elucidated that owing to the higher WGB bed roughness than the SGB one, the conditional SA turbulence and dispersive quantities in the WGB were greater than those in the SGB. Within the roughness layer, the bursting events in the WGB were more persistent and frequent than those in the SGB.
机译:研究了在水力碎石床(WGB)和熨平板碎石床(SGB)上的条件双流平均流速,空间平均(SA)湍流和流中的弥散量。通过使用粒子图像测速系统测量瞬时流场,分析了瞬时和对流爆发事件对WGB和SGB流动的影响。两个床中的流动条件(流速和流动深度)保持相同。研究的SA湍流和分散量为SA雷诺剪切力和正应力,SA湍动能通量,分散剪切力和正应力以及分散动能通量。在实验床中,由于水的工作,与SGB中的随机组织的粗糙度结构相比,WGB表现出空间组织的粗糙度结构,导致WGB的粗糙度高于SGB。对时间突发事件的分析表明,与时间扫描相对应的条件SA湍流量在粗糙度层内占主导地位,而与时间喷射相对应的条件SA湍流量则在粗糙度层上方。对流爆发事件的分析表明,涉及对流扫掠的弥散量是粗糙度层内的关键机制,而涉及对流喷射的散布量是主流层中的主要机制。 WGB和SGB流量结果的比较表明,由于WGB床层的粗糙度比SGB高,因此WGB中的条件SA湍流和分散量要大于SGB。在粗糙层内,WGB中的爆发事件比SGB中的爆发事件更加持久和频繁。

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