首页> 外文会议>FED-vol.262; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20061105-10; Chicago,IL(US) >DIRECT NUMERICAL SIMULATION OF PARTICLE-LADEN TURBULENT FLOWS IN TWO-WAY COUPLING USING EQUILIBRIUM ASSUMPTION
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DIRECT NUMERICAL SIMULATION OF PARTICLE-LADEN TURBULENT FLOWS IN TWO-WAY COUPLING USING EQUILIBRIUM ASSUMPTION

机译:平衡假设下双向耦合中含颗粒湍流的直接数值模拟

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摘要

A two-fluid approach is proposed for direct numerical simulation of particle-laden turbulent flows in two-way coupling through equilibrium assumption that is. Valid for particles with sufficiently small time constants. Making this assumption, a Eu-lerian velocity field is calculated for the particle phase through a truncated series expansion in terms of the velocity and acceleration of the fluid phase and the gravity acceleration. The transport equation of the Eulerian concentration field of particles (particle volume fraction) is solved along with the fluid phase equations for which the effect of particles on the fluid phase is taken into account through source terms in the momentum equations. For the assessment purposes, particle-laden isotropic turbulence is simulated. The results obtained through this approach are compared against those obtained by a trajectory approach in which the particle equations are solved in the Lagrangian framework. It is shown that there is a good agreement between the results obtained by the proposed two-fluid model and the trajectory approach by comparing the mean turbulent kinetic energy and its dissipation rate of the fluid phase as well as their spectra.
机译:提出了一种双流体方法,通过平衡假设,对双向耦合中的含颗粒湍流进行直接数值模拟。对于时间常数足够小的粒子有效。以此假设为基础,通过截断级数展开,根据流体相的速度和加速度以及重力加速度,为粒子相计算了Eu-lerian速度场。求解了欧拉浓度场的输运方程(颗粒体积分数)以及流体方程,通过动量方程中的源项考虑了颗粒对流体相的影响。为了评估的目的,模拟了充满粒子的各向同性湍流。通过此方法获得的结果与通过轨迹方法获得的结果进行比较,在该方法中,粒子方程在拉格朗日框架中得以求解。通过比较平均湍流动能及其在流体相中的耗散率以及它们的光谱,表明通过所提出的双流体模型获得的结果与轨迹方法之间有很好的一致性。

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