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Flow in near-critical fluids induced by shock and expansion waves

机译:冲击波和膨胀波在近临界流体中的流动

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摘要

Unsteady shock and expansion waves are proposed as means to produce flows near the liquid-vapor critical-point without imposing pressure gradients. By choosing appropriate initial conditions and wave speeds, near-critical post-wave conditions can be obtained. The post-shock conditions are shown to be stable with respect to perturbations in the pre-shock conditions. The initial conditions are sufficiently far from the critical-point to allow fast thermal equilibration, permitting the use of larger fluid volumes. Example calculations for the cases of an impulsively accelerated piston, of a shock tube, and of a Ludwieg-like tube are presented yielding flows up to 20 m/s in sulfur hexafluoride (SF6), where the limit is due to the region of validity of the equation of state. The proposed setup also allows one to study shock wave propagation into near-critical fluids.
机译:提出了不稳定的冲击波和膨胀波,作为在不施加压力梯度的情况下在液体蒸气临界点附近产生流动的手段。通过选择适当的初始条件和波速,可以获得接近临界的波后条件。震后条件相对于震前条件下的扰动是稳定的。初始条件离临界点足够远,可以实现快速的热平衡,从而允许使用更大的流体量。给出了对于脉冲加速活塞,减震管和类似Ludwieg的管的示例计算,在六氟化硫(SF6)中产生的流量高达20 m / s,其限制是由于有效范围状态方程。所提出的设置还允许人们研究冲击波向近临界流体的传播。

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