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Numerical Simulation of Shock Wave Propagation in a Mixture of a Gas and Solid Particles

机译:冲击波在气体和固体颗粒混合物中传播的数值模拟

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摘要

A numerical method based on the cubic interpolated polynomial (CIP) approach is applied for simulation of two-velocity two-temperature two-phase flow dynamics. Validation of the results is provided by numerical tests. A problem of shock wave propagation in a mixture of a viscous heat-conducting gas and solid particles of essential volume fractions is investigated as an application case. The influence of the particle size and drag coefficient formulation on the flow pattern, in particular, on the temperature behavior within the relaxation zone is revealed. A comparison with experimental dependences of the parameters behind the shock front on the Mach number is performed.
机译:将基于三次插值多项式(CIP)方法的数值方法用于模拟两速度两温度两相流动动力学。结果验证由数值测试提供。作为应用案例,研究了冲击波在粘性导热气体和主要体积分数固体颗粒的混合物中传播的问题。揭示了粒径和阻力系数公式对流型的影响,特别是对弛豫区内温度行为的影响。对冲击前沿后面的参数对马赫数的实验依赖性进行了比较。

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