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Comparative Study Compact Scheme for the Case of Shock Tube Problem

机译:冲击管问题案例的比较研究紧凑型方案

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In this work, a high-order compact upwind scheme is developed for solving one-dimensional Euler equation. A detailed investigation was conducted to assess the performance of the basic third-order compact central discretization schemes. From this observation, discretization of the convective flux terms of the Euler equation is based on a hybrid flux-vector splitting, known as the advection upstream splitting method (AUSM) scheme which combines the accuracy of flux-difference splitting and the robustness of flux-vector splitting. In one-dimensional problem for the first order schemes, an explicit method is adopted by using time integration method. In addition to that, development and modification of source code for the one-dimensional flow is validated with two test cases namely, unsteady shock tube and quasi-one-dimensional supersonic-subsonic nozzle flow were using as a comparative study. Further analysis had also been done in comparing the characteristic of AUSM scheme against experimental results, obtained from previous works and also comparative analysis with computational results generated by van Leer, KFVS and AUSMPW schemes. Furthermore, there is a remarkable improvement with the extension of the AUSM scheme from first-order to third-order accuracy in terms of shocks, contact discontinuities and rarefaction waves.
机译:在这项工作中,为求解一维欧拉方程,开发了高阶紧凑迎风方案。进行了详细的调查,以评估基本的三阶紧凑型中央离散化方案的性能。从该观察结果来看,欧拉方程的对流通量项的离散化基于混合通量-矢量分裂,称为对流上游分裂方法(AUSM)方案,该方案结合了通量-差分分裂的精度和通量的鲁棒性,向量分裂。在一阶方案的一维问题中,采用时间积分法采用显式方法。除此之外,还通过非稳态激波管和准一维超音速-亚音速喷嘴流这两个测试案例对一维流源代码的开发和修改进行了验证,以作为比较研究。在比较AUSM方案的特征与实验结果(从以前的工作获得的结果)以及与van Leer,KFVS和AUSMPW方案产生的计算结果进行比较分析中也进行了进一步的分析。此外,在冲击,接触不连续和稀疏波方面,随着AUSM方案从一阶精度扩展到三阶精度,有了显着的改进。

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