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首页> 外文期刊>Journal of Fluid Mechanics >Large-eddy simulations of turbulent swirling flows injected into a dump chamber
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Large-eddy simulations of turbulent swirling flows injected into a dump chamber

机译:进入转储室的湍流涡流的大涡模拟

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Turbulent swirling flows injected into a coaxial dump chamber at different swirl numbers were studied using large-eddy simulations. The Favre-filtered conservation equations of mass, momentum, and energy in three dimensions were solved numerically by means of a finite-volume approach. Results have been validated against experimental data in terms of mean flow velocity and turbulence properties. The work provides insight into several salient features of swirling flows, including vortex breakdown, shear-layer instability, and vortico-acoustic interactions. The dominant acoustic mode in the chamber was found to be sensitive to unsteady vorticity evolution, which in turn strongly depends on the swirl number. Low-frequency acoustic oscillations may arise from large-scale coherent motions in the central toroidal recirculation zone at high swirl numbers. In contrast, the shear-layer instability downstream of the backward-facing step results in high-frequency acoustic waves at low swirl numbers.
机译:使用大涡模拟研究了以不同旋流数注入同轴排料室的湍流旋流。通过有限体积方法,对经过Favre滤波的质量,动量和能量守恒方程进行了三维求解。根据平均流速和湍流特性,已针对实验数据验证了结果。这项工作深入了解了旋流的几个显着特征,包括涡旋破裂,剪切层不稳定性和涡旋声相互作用。发现室内的主要声模对不稳定的涡旋演化敏感,而不稳定的涡旋演化又强烈取决于旋流数。低频声振荡可能是由中央环形循环区中高涡旋数下的大规模相干运动引起的。相反,向后步骤下游的剪切层不稳定性导致低涡旋数的高频声波。

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