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首页> 外文期刊>Journal of Fluid Mechanics >Effects of magnetic field on the turbulent wake of a cylinder in free-surface magnetohydrodynamic channel flow
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Effects of magnetic field on the turbulent wake of a cylinder in free-surface magnetohydrodynamic channel flow

机译:磁场对自由表面磁流体动力通道中圆柱湍流的影响

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摘要

Results from a free-surface magnetohydrodynamic (MHD) flow experiment are presented detailing the modification of vortices in the wake of a circular cylinder with its axis parallel to the applied magnetic field. Experiments were performed at Reynolds numbers of the order of Re ~ 10~4 as the interaction parameter N, representing the ratio of electromagnetic forces to inertial forces, was increased through unity. The von Kármán vortex street in the wake of the cylinder was observed by simultaneously sampling the gradient of the induced electric potential, ▽_?, at 16 cross-stream locations as a proxy for the streamwise fluid velocity. An ensemble of vortex velocity profiles was measured as a function of the applied magnetic field strength. Results indicate a significant change in the circulation of vortices and the deviations from the average profile as N was increased. By sampling the fluctuations in ▽_? at three locations in the wake, the decay of the vortices was examined and the effective viscosity was found to decrease as N~(-0.49±0.04). Using temperature as a passive tracer, qualitative observations were made with an infrared(IR) camera that showed significant changes in the wake, including the absence of small-scale structures at high magnetic field strengths. Collectively, the results suggest that the reduction in effective viscosity was due to the suppression of the small-scale eddies by the magnetic field. The slope of the power spectrum was observed to change from a k~(-1.8) power law at low N to a k~(-3.5) power law for N > 1. Together, these results suggest the flow smoothly transitioned from a hydrodynamic state to a magnetohydrodynamic regime over the range of 0
机译:提出了自由表面磁流体动力学(MHD)流动实验的结果,详细介绍了在绕轴平行于外加磁场的圆柱体后涡流的变化。实验以Re〜10〜4的雷诺数进行,因为相互作用参数N表示电磁力与惯性力的比值增加了1。通过在16个横流位置同时采样感应电势▽_?的梯度来观察圆柱体尾部的vonKármán涡街,以作为沿流速度的代理。测量了涡旋速度分布的集合,该集合是所施加的磁场强度的函数。结果表明,随着N的增加,涡流的循环发生了显着变化,并且偏离了平均曲线。通过对▽_的波动进行采样?在尾流的三个位置,检查了涡旋的衰减,发现有效粘度降低为N〜(-0.49±0.04)。使用温度作为被动示踪剂,用红外(IR)摄像机进行了定性观察,显示了尾迹的显着变化,包括在高磁场强度下不存在小尺度结构。总的来说,结果表明有效粘度的降低是由于磁场对小涡旋的抑制。观察到功率谱的斜率从低N的ak〜(-1.8)幂定律变为N> 1的ak〜(-3.5)幂定律。这些结果共同表明流动从流体动力状态平稳过渡到流体动力状态。磁流体动力学范围在0

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