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Two-Way Coupled Large-Eddy Simulations of the Gas-Solid Flow in Cyclone Separators

机译:旋风分离器内气固两流耦合的大涡模拟

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Three-dimensional(3-D),time-dependent Eulerian-Lagrangian simulations of the turbulent gas-solid flow in cyclone separators have been performed.The gas flow is simulated with the lattice-Boltzmann method.It solves the filtered Navier-Stokes equations,where the Smagorinsky subgrid-scale model has been used to represent the effect of the filtered scales.Through this large-eddy representation of the gas flow,solid particles with different sizes are tracked.By viewing the individual particles(of which there are some 10 inside the cyclone at any moment in time)as clusters of particles(parcels),the effect of particle-to-gas coupling on the gas-flow and particle behavior at modest mass-loadings(up to 0.2 kg dust per kg air)is studied.The numerical approach is able to capture the effect of mass loading on the swirl intensity as reported in the experimental literature.The performance of a Stairmand high-efficiency cyclone under various loading conditions is systematically studied.The presence of solid particles causes the cyclone to lose swirl intensity.Furthermore,the turbulence of the gas flow gets strongly damped.These two effects have significant consequences for the performance of the cyclone.The pressure drop monotonically decreases with mass loading.The collection efficiency responds in a more complicated manner to the mass loading,with mostly increased cut sizes,and increased overall efficiencies.
机译:对旋风分离器中的气固两相流进行了三维(3-D)时变的欧拉-拉格朗日模拟,用格-玻尔兹曼方法模拟了气体流动,求解了过滤后的Navier-Stokes方程,其中使用了Smagorinsky子网格规模模型来表示过滤后的规模。通过这种大涡流表示的气流,可​​以跟踪具有不同尺寸的固体颗粒。通过查看单个颗粒(其中有一些颗粒)在旋风分离器内部随时有10个颗粒),颗粒-气体耦合对中等质量载荷下的气流和颗粒行为的影响(每千克空气最多含0.2千克灰尘)如文献报道的那样,数值方法能够捕获质量载荷对旋流强度的影响。系统地研究了Stairmand高效旋风分离器在各种载荷条件下的性能。 f固体颗粒使旋风分离器失去涡流强度。此外,气流的湍流被强烈阻尼。这两个影响对旋风分离器的性能产生重大影响。压降随质量负荷单调降低。以更复杂的方式处理质量负载,主要是增加了切割尺寸,并提高了整体效率。

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