首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >On the Use of High-Order Accurate Solutions of PNS Schemes as Basic Flows for Stability Analysis of Hypersonic Axisymmetric Flows
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On the Use of High-Order Accurate Solutions of PNS Schemes as Basic Flows for Stability Analysis of Hypersonic Axisymmetric Flows

机译:关于使用PNS格式的高阶精确解作为基本流进行高超声速轴对称流稳定性分析

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摘要

High-order accurate solutions of parabolized Navier-Stokes (PNS) schemes are used as basic flow models for stability analysis of hypersonic axisymmetric flows over blunt and sharp cones at Mach 8. Both the PNS and the globally iterated PNS (IPNS) schemes are utilized. The IPNS scheme can provide the basic flow field and stability results comparable with those of the thin-layer Navier-Stokes (TLNS) scheme. As a result, using the fourth-order compact IPNS scheme, a high-order accurate basic flow model suitable for stability analysis and transition prediction can be efficiently provided. The numerical solution of the PNS equations is based on an implicit algorithm with a shock fitting procedure in which the basic flow variables and their first and second derivatives required for the stability calculations are automatically obtained with the fourth-order accuracy. In addition, consistent with the solution of the basic flow, a fourth-order compact finite-difference scheme, which does not need higher derivatives of the basic flow, is efficiently implemented to solve the parallel-flow linear stability equations in intrinsic orthogonal coordinates. A sensitivity analysis is also conducted to evaluate the effects of numerical dissipation and grid size and also accuracy of computing the basic flow derivatives on the stability results. The present results demonstrate the efficiency and accuracy of using high-order compact solutions of the PNS schemes as basic flow models for stability and transition prediction in hypersonic flows. Moreover, indications are that high-order compact methods used for basic-flow computations are sensitive to the grid size and especially the numerical dissipation terms, and therefore, more careful attention must be kept to obtain an accurate solution of the stability and transition results.
机译:抛物线化的Navier-Stokes(PNS)方案的高阶精确解用作基本流动模型,用于分析8马赫直角和尖锥上的超音速轴对称流动的稳定性。 。 IPNS方案可以提供与薄层Navier-Stokes(TLNS)方案相当的基本流场和稳定性结果。结果,使用四阶紧凑型IPNS方案,可以有效地提供适合于稳定性分析和转变预测的高阶精确基本流模型。 PNS方程的数值解是基于具有减震程序的隐式算法,其中,基本流量变量及其稳定性计算所需的一阶和二阶导数以四阶精度自动获得。另外,与基本流的解一致,有效地实现了不需要基本流的更高导数的四阶紧凑有限差分方案,以求解固有正交坐标中的并行流线性稳定性方程。还进行了敏感性分析,以评估数值耗散和网格尺寸的影响,以及计算基本流量导数对稳定性结果的准确性。目前的结果证明了使用PNS方案的高阶紧凑型解作为高超音速流的稳定性和过渡预测的基本流模型的效率和准确性。此外,有迹象表明,用于基本流计算的高阶紧凑型方法对网格大小,尤其是数值耗散项敏感,因此,必须更加小心以获取稳定性和过渡结果的精确解。

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