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首页> 外文期刊>International Journal of Multiphase Flow >Triple decomposition technique in air-water flows: Application to instationary flows on a stepped spillway
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Triple decomposition technique in air-water flows: Application to instationary flows on a stepped spillway

机译:空气-水流中的三重分解技术:应用于阶梯式溢洪道的非平稳流

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Self-sustained instabilities and pseudo-periodic motion may be observed in hydraulic structures and industrial flows. Documented examples include the hydraulic jump, sloshing motion in a reservoir and surging waves in pooled stepped spillways. The instabilities may generate some very large turbulence levels and integral turbulent scales, combining the contributions of both slow fluctuations and fast turbulent fluctuations. Herein a triple decomposition of phase-detection probe signals was developed to identify the turbulent contributions of the slow and fast velocity components in highly aerated free-surface flows. The raw probe signals were split into slow and fast signal components and the air-water flow properties of each component were calculated. The method was applied to a new data set collected down a stepped spillway channel with two stepped configurations (flat and pooled). The latter configuration experienced some self-sustained pseudo-periodic instabilities. The data analysis results showed that the fast turbulent velocity fluctuations of the decomposed signal were close to the turbulence levels on the flat stepped spillway (i.e. in absence of instability). And the largest turbulent energy was contained in the slow fluctuating velocity component. The findings showed a new implementation of a triple decomposition technique to instationary air-water flows.
机译:在水工结构和工业流程中可能会观察到自我维持的不稳定性和伪周期运动。记录的示例包括水力跃迁,储层中的晃动和汇集的阶梯式溢洪道中的汹涌波浪。不稳定性可能会产生一些非常大的湍流水平和整体湍流尺度,将慢速波动和快速湍流波动两者的作用结合起来。在此,对相位检测探针信号进行了三重分解,以识别高充气自由表面流中慢速和快速成分的湍流作用。将原始探测信号分为慢速信号分量和快速信号分量,并计算每个分量的空气-水流特性。该方法已应用于沿阶梯式溢洪道通道收集的新数据集,阶梯式溢洪道具有两个阶梯式配置(平坦和合并)。后一种配置经历了一些自持的伪周期不稳定性。数据分析结果表明,分解信号的快速湍流速度波动接近平坦阶梯式溢洪道上的湍流水平(即没有不稳定性)。在缓慢的脉动速度分量中包含了最大的湍流能量。研究结果表明,三重分解技术可用于固定的空气-水流。

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