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Riemann Techniques for the Simulation of CompressibleLiquid Flows with Phase-transition at all Mach numbers -Shock and Wave Dynamics in Cavitating 3-D Micro andMacro Systems

机译:riemann技术用于仿真压缩的电流流动,在空化3-D微型和macro System中的所有Mach数字的相位转移和波动动力学

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We investigate numerical flux functions for the inviscid flux components of the 3-D time-dependent balance laws of mass, momentum and energy. Special emphasis is put on the suitability of these fluxes to simulate compressible low speed liquid flows as well as to simulate liquid flows with phase transition. It is demonstrated that the classical approaches based on exact or approximate solutions of the Riemann problem between adjacent cells do not lead to uniformly consistent flux functions with respect to multidimensional low Mach number flow. Therefore, we introduce a uniformly consistent numerical flux function and perform a series of steady and unsteady simulations of pure liquid flow and cavitating liquid flow. We demonstrate the applicability of the proposed CFD-Tool CATUJVI to resolve wave dynamics and to predict the evolution of cavitation structures inside a 3-D multi-hole injector. Finally, we investigate the 3-D time dependent cavitating flow around a prismatic body. Here we point out the suitability of our CFD-Tool to predict erosive shock loads of collapsing vapor clouds.
机译:我们调查3-D时间依赖性余额质量,动量和能量的INCISCID助焊剂组件的数控函数。特别强调这些助熔剂的适用性模拟可压缩的低速液体流动以及模拟液体流动的相变。结果证明,基于相邻小区之间的Riemann问题的精确或近似解的经典方法不会导致相对于多维低马力数流的均匀一致的磁通函数。因此,我们介绍了均匀一致的数字通量函数,并执行一系列稳定和不稳定的纯液体流动模拟和空化液体流动。我们展示了所提出的CFD-Tool Catujvi对波动动力学的适用性,并预测3-D多孔喷射器内的空化结构的演变。最后,我们研究了棱镜体周围的3-D时间依赖性空气流动。在这里,我们指出了我们的CFD工具的适用性,以预测折叠蒸汽云的腐蚀冲击载荷。

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