首页> 外文会议>American Society of Mechanical Engineers(ASME) Joint U.S.-European Fluids Engineering Division Summer Conference 2006(FEDSM2006) vol.1 pt.A; 20060717-20; Miami,FL(US) >MODELING OF PARTICULATE PRESSURE IN THE FRAME OF MESOSCOPIC EULERIAN FORMALISM FOR COMPRESSIBLE REACTIVE DISPERSED TWO-PHASE FLOWS
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MODELING OF PARTICULATE PRESSURE IN THE FRAME OF MESOSCOPIC EULERIAN FORMALISM FOR COMPRESSIBLE REACTIVE DISPERSED TWO-PHASE FLOWS

机译:可压缩反应性分散两相流的介观欧拉范式框架中的颗粒压力建模

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In space propulsion, compressible reactive dispersed two-phase flows are investigated in order to predict the behavior of solid or liquid rqpket motors. In the frame of full Eulerian approach, physical modeling of aerodynamic flows in such motors is performed resolving unsteady compressible Navier-Stokes equations for both phases. However, numerical simulations performed on a simple axisymmetric motor have pointed out a flaw of this basic Eulerian approach. Indeed, the variance of the particle velocity distribution is not accounted for, leading to unrealistic accumulations of particles in some specific flow region. To correct this shortcoming, we have developed an advanced Eulerian model based on a statistical approach in the framework of the Mesoscopic Eulerian Formalism (MEF).
机译:在空间推进中,研究了可压缩的反应性分散两相流,以预测固体或液体电动机的性能。在完全欧拉方法的框架中,对此类电动机中的空气动力流进行物理建模,以解决两个阶段的不稳定可压缩Navier-Stokes方程。然而,在简单的轴对称电动机上进行的数值模拟指出了这种基本的欧拉方法的缺陷。实际上,没有考虑颗粒速度分布的变化,从而导致在某些特定流动区域中颗粒的不切实际的累积。为了纠正这一缺点,我们在介观欧拉形式主义(MEF)框架内基于统计方法开发了高级欧拉模型。

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