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An efficient, semi-implicit pressure-based scheme employing a high-resolution finite element method for simulating transient and steady, inviscid and viscous, compressible flows on unstructured grids.

机译:一个有效的,基于隐式压力的方案,该方案采用高分辨率有限元方法来模拟非结构化网格上的瞬态和稳态,不粘稠和可压缩的流动。

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摘要

A new semi-implicit pressure-based Computational Fluid Dynamics (CFD) scheme for simulating a wide range of transient and steady, inviscid and viscous compressible flow on unstructured finite elements is presented here. This new CFD scheme, termed the PCICE-FEM (Pressure-Corrected ICE-Finite Element Method) scheme, is composed of three computational phases, an explicit predictor, an elliptic pressure Poisson solution, and a semi-implicit pressure-correction of the flow variables. The PCICE-FEM scheme is capable of second-order temporal accuracy by incorporating a combination of a time-weighted form of the two-step Taylor-Galerkin Finite Element Method scheme as an explicit predictor for the balance of momentum equations and the finite element form of a time-weighted trapezoid rule method for the semi-implicit form of the governing hydrodynamic equations. Second-order spatial accuracy is accomplished by linear unstructured finite element discretization. The PCICE-FEM scheme employs Flux-Corrected Transport as a high-resolution filter for shock capturing. The scheme is capable of simulating flows from the nearly incompressible to the high supersonic flow regimes.; The PCICE-FEM scheme represents an advancement in mass-momentum coupled, pressure-based schemes. The governing hydrodynamic equations for this scheme are the conservative form of the balance of momentum equations (Navier-Stokes), mass conservation equation, and total energy equation. An operator splitting process is performed along explicit and implicit operators of the semi-implicit governing equations to render the PCICE-FEM scheme in the class of predictor-corrector schemes. The complete set of semi-implicit governing equations in the PCICE-FEM scheme are cast in this form, an explicit predictor phase and a semi-implicit pressure-correction phase with the elliptic pressure Poisson solution coupling the predictor-corrector phases. The result of this predictor-corrector formulation is that the pressure Poisson equation in the PCICE-FEM scheme is provided with sufficient internal energy information to avoid iteration. The ability of the PCICE-FEM scheme to accurately and efficiently simulate a wide variety of inviscid and viscous compressible flows is demonstrated here.
机译:本文提出了一种新的基于半隐式压力的计算流体动力学(CFD)方案,用于模拟非结构化有限元上的各种瞬态和稳态,不粘和粘性可压缩流。这种新的CFD方案称为PCICE-FEM(压力校正ICE-有限元方法)方案,它由三个计算阶段,一个明确的预测变量,一个椭圆压力泊松解和一个半隐式压力校正流组成。变量。通过结合时间加权形式的两步泰勒-加勒金有限元方法方案的组合,PCICE-FEM方案能够实现二阶时间精度,作为动量方程和有限元形式平衡的显式预测器时间加权梯形规则方法用于控制流体力学方程的半隐式形式。二阶空间精度是通过线性非结构化有限元离散化实现的。 PCICE-FEM方案采用校正通量的传输作为高分辨率滤波器来捕获震动。该方案能够模拟从几乎不可压缩到高超声速流动状态的流动。 PCICE-FEM方案代表了基于压力的质量动量耦合方案的进步。该方案的主导流体力学方程是动量方程(Navier-Stokes),质量守恒方程和总能量方程平衡的保守形式。沿着半隐式控制方程的显式和隐式运算符执行运算符拆分过程,以将PCICE-FEM方案呈现为预测器-校正器方案类。 PCICE-FEM方案中的完整半隐式控制方程组以这种形式转换:显式预测器阶段和半隐式压力校正阶段,其中椭圆压力Poisson解耦合了预测器-校正器阶段。这种预测器-校正器公式的结果是,为PCICE-FEM方案中的压力泊松方程提供了足够的内部能量信息,从而避免了迭代。此处展示了PCICE-FEM方案准确而有效地模拟各种不粘和粘性可压缩流的能力。

著录项

  • 作者

    Martineau, Richard Charles.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 219 p.
  • 总页数 219
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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