AbstractWe consider the propagation of a shock wave in a mixture of a gas and fine solid particles with allowance for the differenc'/> The Shock-Wave Structure in a Gas?Particle Mixture with Chaotic Pressure
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The Shock-Wave Structure in a Gas?Particle Mixture with Chaotic Pressure

机译:气体中的冲击波结构?颗粒混合物,混沌压力

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AbstractWe consider the propagation of a shock wave in a mixture of a gas and fine solid particles with allowance for the difference in their velocities and the availability of the proper pressure of the phase of particles; here, equations of the Anderson type and others are used. We propose an approximate mathematical model of the flow; in this model, the dependence of the pressure of the first (gaseous) phase from the particles’ volume-concentration can be ignored, but the terms that present the phase volume-concentration multiplied by the pressure gradient of the gas are taken into account. It turns out that with this representation of the equation of state, the mathematical model has the hyperbolic type. For this system of equations of mechanics of heterogeneous media, we carry out the classification of the types of shock waves implemented in the considered mixture. The presented statements about the types are illustrated by numerical computations in stationary and nonstationary formulations; for this purpose, the numerical method of the TVD type is developed.]]>
机译:<![cdata [ <标题>抽象 ara>我们考虑冲击波在气体和细固体颗粒的混合物中传播,具有余量它们的速度差异以及颗粒相位的适当压力的可用性;这里,使用Anderson类型和其他方程。我们提出了一种近似的流量的数学模型;在该模型中,可以忽略第一(气态)相与颗粒体积浓度的压力的依赖性,但考虑了存在相体积浓度乘以气体的压力梯度的术语。事实证明,通过该状态方程的这种表示,数学模型具有双曲型。对于这种异质介质的机械结构系统,我们执行在所考虑的混合物中实现的冲击波类型的分类。关于这些类型的陈述是通过静止和非间断制剂中的数值计算来说明的。为此,开发了TVD类型的数值方法。 ]]>

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