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Oblique waves in steady supersonic flows of Bethe-Zel'dovich-Thompson fluids

机译:斜波在贝特 - zel'dovich-thompson液体稳定的超音速流动

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Steady self-similar solutions to the supersonic flow of Bethe-Zel'dovich-Thompson fluids past compressive and rarefactive ramps are derived. Inviscid, non-heat-conducting, non-reacting and single-phase vapour flow is assumed. For convex isentropes and shock adiabats in the pressure-specific volume plane (classical gas dynamic regime), the well-known oblique shock and centred Prandtl-Meyer fan occur at a compressive and rarefactive ramp, respectively. For non-convex isentropes and shock adiabats (non-classical gas dynamic regime), four additional wave configurations may possibly occur; these are composite waves in which a Prandtl-Meyer fan is adjacent up to two oblique shock waves. The steady two-dimensional counterparts of the wave curves defined for the one-dimensional Riemann problem are constructed. In the present context, such curves consist of all the possible states connected to a given initial state (namely, the uniform state upstream of the ramp/wedge) by means of a steady self-similar solution. In addition to the classical case, as many as six non-classical wave-curve configurations are singled out. Moreover, the necessary conditions leading to each type of wave curves are analysed and a map of the upstream states leading to each configuration is determined.
机译:衍生出了贝特 - 齐尔'Dovich-Thompson流体过度压缩和稀疏坡道的超声波流量的稳定自相似的解决方案。假设无粘性,非导热,非反应和单相蒸汽流动。对于压力特异性体积平面(经典气体动态制度)中的凸起等于凸起,众所周知的倾斜休克和居中的Prandtl-Meyer风扇分别发生在压缩和稀疏坡道上。对于非凸性等型和休克绝抗(非古典气体动态制度),可能发生四个额外的波形配置;这些是复合波,其中Prandtl-Meyer风扇靠近两个倾斜冲击波。构建为一维riemann问题定义的波曲线的稳定二维对应物。在本文中,通过稳定的自相似的解决方案,这种曲线由连接到给定初始状态的所有可能的状态(即斜坡/楔上下游的均匀状态)组成。除了经典案例之外,多达六个非古典波曲线配置被挑出。此外,分析了导致每种类型波曲线的必要条件,并确定导致每个配置的上游状态的地图。

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