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首页> 外文期刊>Canadian Journal of Civil Engineering >Turbulence measurements in submerged hydraulic jumps with baffle blocks
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Turbulence measurements in submerged hydraulic jumps with baffle blocks

机译:带有挡板的水下液压跳跃中的湍流测量

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摘要

Laboratory measurements of turbulence in submerged hydraulic jumps with blocks downstream of a sluice gate are presented. As observed previously two flow regimes were distinguished; the deflected surface jet (DSJ) and the reattaching wall jet (RWJ) regimes. In the DSJ regime considerable turbulent kinetic energy (TKE) was generated just downstream of the blocks and the rate of dissipation of TKE was found to be very high resulting in a rapid decay of TKE. In the RWJ flow regime the magnitude of both the TKE and the dissipation rate were considerably lower but because the TKE decayed more slowly higher levels of TKE persisted farther downstream. This study provides insights into the production and dissipation of turbulence in submerged flows and helps to explain why a submerged jump with blocks with a low submergence factor; i.e., the DSJ flow regime, is as effective as a free jump in dissipating energy.
机译:提出了在闸门下游的水下水力跳跃中的湍流的实验室测量方法。如先前所观察到的,区分了两种流动方式。偏转表面射流(DSJ)和重新附着壁射流(RWJ)方案。在DSJ模式中,恰好在块的下游产生了相当大的湍动能(TKE),并且发现TKE的耗散率非常高,导致TKE迅速衰减。在RWJ流动状态下,TKE的大小和耗散率均较低,但由于TKE的衰减速度较慢,因此较高的TKE持续向下游移动。这项研究提供了对淹没流中湍流产生和消散的见解,并有助于解释为什么淹没跳动具有低淹没因子的块;即DSJ流动状态与耗散能量的自由跳跃一样有效。

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