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Simulation of Drop Impact on a Hot Wall using SPH Method with Peng-Robinson Equation of State

机译:用SPH法用PENG-Robinson方程对热壁撞击的模拟

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This study presents a smoothed particle hydrodynamics (SPH) method with Peng-Robinson equation of state for simulating drop vaporization and drop impact on a hot surface. The conservation equations of momentum and energy and Peng-Robinson equation of state are applied to describe both the liquid and gas phases. The governing equations are solved numerically by the SPH method. The phase change between the liquid and gas phases are simulated directly without using any phase change models. The numerical method is validated by comparing numerical results with analytical solutions for the vaporization of n-heptane drops at different temperatures. Using the SPH method, the processes of n-heptane drops impacting on a solid wall with different temperatures are studied numerically. The results show that the size of the film formed by drop impact decreases when temperature increases. When the temperature is high enough, the drop will rebound.
机译:该研究介绍了具有彭罗宾逊方程的平滑粒子流体动力学(SPH)方法,用于模拟液滴蒸发,并对热表面造成撞击。施加动量和能量和能量和鹏罗宾逊方程的保护方程被应用于描述液体和气相阶段。通过SPH方法数值求解控制方程。液体和气相之间的相变直接模拟而不使用任何相变模型。通过将数值结果与分析溶液进行比较来验证数值方法,以在不同温度下蒸发正庚烷滴的分析溶液。使用SPH方法,在数值上研究了影响具有不同温度的实心壁的正庚烷下降的方法。结果表明,当温度升高时,通过下降冲击形成的薄膜的尺寸减小。当温度足够高时,下降将反弹。

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