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Particle-Laden Pipe Flows at High Volume Fractions Show Transition Without Puffs

机译:高体积分数下充满颗粒的管道流动显示出无气泡的过渡

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摘要

Using ultrasound imaging velocimetry, we are able to present unique insight in transitional particle-laden flows. Together with a Moody diagram of time-averaged properties, we demonstrate that the laminarturbulent transition behavior at high volume fractions is distinct from the single-phase case and cases with low volume fractions. For low volume fractions, a sharp transition is found with the presence of turbulent puffs, similar to the single-phase case. Seemingly, particles in this regime trigger subcritical transition. For high volume fractions a smooth transition is discovered without turbulent puffs in the transition regime. For this regime, particles cause a supercritical transition.
机译:使用超声成像测速仪,我们能够在充满过渡粒子的流动中展现独特见解。结合时间平均特性的穆迪图,我们证明了在高体积分数下的层动湍流行为不同于单相情况和低体积分数的情况。对于低体积分数,类似于单相情况,在存在湍流抽吸的情况下会发现急剧过渡。看来,这种状态下的粒子会触发亚临界转变。对于高体积分数,发现在过渡过程中没有湍流抽吸的平稳过渡。对于这种状态,粒子会导致超临界转变。

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