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An efficient semi-implicit finite volume method for axially symmetric compressible flows in compliant tubes

机译:顺应管中轴对称可压缩流的有效半隐式有限体积方法

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In the present paper a new efficient semi-implicit finite volume method for the simulation of weakly compressible, axially symmetric flows in compliant tubes is presented. The fluid is assumed to be barotropic and a simple cavitation model is also included in the equation of state in order to model phase transition when the fluid pressure drops below the vapor pressure. The discretized flow equations lead to a mildly nonlinear system of equations that is efficiently solved with a nested Newton technique. The new numerical method has to obey only a mild CFL condition based on the flow velocity and not on the sound speed, leading to large time steps that can be used. The scheme behaves well in the presence of shock waves and phase transition, as well as in the incompressible limit In the present approach, the radial velocity profiles and therefore the wall friction coefficient are directly computed from first principles. In the compressible regime, the new method is carefully validated against quasi-exact solutions of the Riemann problem, while it is validated against the exact solution found by Womersley for an oscillatory flow in a rigid tube in the incompressible regime.
机译:在本文中,提出了一种新的有效的半隐式有限体积方法,用于模拟柔顺管中的弱可压缩,轴向对称流动。假定流体是正压流体,并且状态方程中还包含一个简单的空化模型,以便在流体压力降至低于蒸汽压力时为相变建模。离散的流动方程导致了一个温和的非线性方程组,可以使用嵌套牛顿技术对其进行有效求解。新的数值方法必须仅根据流速而不是声速来遵守温和的CFL条件,从而导致可以使用较大的时间步长。该方案在存在冲击波和相变以及不可压缩极限的情况下表现良好。在本方法中,直接根据第一原理计算径向速度分布以及壁摩擦系数。在可压缩状态下,该新方法已针对Riemann问题的准精确解进行了仔细验证,而在Womersley针对不可压缩状态下的刚性管中的振荡流所产生的精确解中,对该新方法进行了验证。

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