首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >NUMERICAL SIMULATION OF OSCILLATIONS OF A MONODISPERSE GAS-PARTICLE MIXTURE IN A NONLINEAR WAVE FIELD
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NUMERICAL SIMULATION OF OSCILLATIONS OF A MONODISPERSE GAS-PARTICLE MIXTURE IN A NONLINEAR WAVE FIELD

机译:非线性波场中单色散气粒混合气振荡的数值模拟

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This paper presents a numerical simulation procedure for the dynamics of a monodisperse gas-particle mixture in the nonlinear wave field of an acoustic resonator using a two-temperature two-velocity model ignoring phase transitions, particle collision, and possible coagulation. It is assumed that viscosity is present only in the carrier medium described by the Navier-Stokes equations for a compressible gas. The dispersed phase is described by the equation of conservation of mass, momentum, and energy. A monotonic solution is obtained by solving the equations of motion for the carrier medium and dispersed phase in generalized moving coordinates using the explicit McCormack method with splitting in the spatial directions and a conservative correction scheme. The method can be used to study nonlinear oscillations of two-phase mixtures in the vicinity of the first three eigenfrequencies in a flat channel.
机译:本文提出了一种使用双温度两速度模型忽略相变,颗粒碰撞和可能发生凝结的声共振器非线性波场中单分散气体-颗粒混合物动力学的数值模拟程序。假定粘度仅存在于可压缩气体的Navier-Stokes方程描述的载体介质中。分散相由质量,动量和能量守恒方程式描述。通过使用显式McCormack方法(在空间方向上划分)和保守的校正方案,通过求解广义运动坐标中的载体介质和分散相的运动方程,可以得到单调解。该方法可用于研究平坦通道中前三个本征频率附近的两相混合物的非线性振荡。

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