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Treatment of laser-induced thermal acoustics in the framework of discrete kinetic theory

机译:离散动力学理论框架中激光诱导热声学的处理

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摘要

The physics behind the laser-induced thermal acoustics technique is dealt with on a microscopic level. A discrete velocity model of the Boltzmann equation for inelastically interacting gas mixtures in the presence of two counterpropagating laser beams is established. The collisional scheme for the model is developed by taking into account elastic and inelastic interactions between the gas particles, on the one hand, and the interactions between monochromatic laser photons and gas particles, on the other hand. The formation and evolution of laser-pulse-driven thermal and density gratings are simulated by numerically solving the discrete kinetic equations based on the fractional step method. Numerical results are provided for a wide scope of Knudsen numbers. [References: 19]
机译:在微观水平上处理激光诱导的热声学技术背后的物理学。 建立了在两个反向激光束的存在下,建立了用于在两个反向激光束的情况下嵌入式相互作用气体混合物的离散速度模型。 另一方面,通过考虑气体颗粒之间的弹性和非弹性相互作用和单色激光光子和气体颗粒之间的相互作用来开发模型的碰撞方案。 通过基于分数步骤方法数值求解离散动力学方程来模拟激光脉冲驱动热和密度光栅的形成和演化。 提供了数值结果,用于广泛的knudsen数。 [参考:19]

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