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Perturbation threshold and hysteresis associated with the transition to turbulence in sudden expansion pipe flow

机译:与突然膨胀的管道中的湍流过渡相关的摄动阈值和滞后

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The complex flow resulting from the laminar-turbulent transition in a sudden expansion pipe flow, with expansion ratio of 1:2, subjected to an inlet parabolic velocity profile and a vortex perturbation, is investigated by means of direct numerical simulations. It is shown that the threshold amplitude for disordered motion is described by a power law scaling, with -3 exponent, as a function of the subcritical Reynolds number. The instability originates from a region of intense shear rate, which results on the flow symmetry breakdown. Above the threshold, several unsteady states are identified using space-time diagrams of the centreline axial velocity fluctuation and their energy. In addition, the simulations show a small hysteresis transition mode due to the reestablishment of the recirculation region in the subcritical range of Reynolds numbers, which depends on: (i) The initial and final quasi-steady states, (ii) the observation time and (iii) the number of intermediate steps taken when increasing and decreasing the Reynolds number.
机译:通过直接数值模拟研究了在膨胀比为1:2的突然膨胀管流中层流湍流过渡产生的复杂流动,该膨胀流受到入口抛物线速度分布和涡旋扰动的影响。结果表明,无序运动的阈值幅度由幂定律按-3指数描述,该函数是次临界雷诺数的函数。不稳定性源于强烈的剪切速率区域,其导致流动对称性破坏。在阈值之上,使用中心线轴向速度波动及其能量的时空图可以识别出几种不稳定状态。此外,由于在雷诺数的亚临界范围内重新建立了再循环区域,因此模拟显示出较小的磁滞过渡模式,这取决于:(i)初始和最终的准稳态,(ii)观测时间和(iii)增大和减小雷诺数时采取的中间步骤数。

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