Gradient based reconstruction: inviscid and viscous flux discretizations, shock capturing, and its application to single and multicomponent flows
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Publication:2108598
DOI10.1016/j.compfluid.2022.105706OpenAlexW4308156326MaRDI QIDQ2108598
Publication date: 20 December 2022
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2205.01034
Related Items (3)
On the application of gradient based reconstruction for flow simulations on generalized curvilinear and dynamic mesh domains ⋮ Implicit gradients based conservative numerical scheme for compressible flows ⋮ Efficient high-order gradient-based reconstruction for compressible flows
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Cites Work
- Unnamed Item
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- High order weighted essentially nonoscillatory WENO-\(\eta\) schemes for hyperbolic conservation laws
- A sixth order hybrid finite difference scheme based on the minimized dispersion and controllable dissipation technique
- A low-dissipation and time-accurate method for compressible multi-component flow with variable specific heat ratios
- Numerical (error) issues on compressible multicomponent flows using a high-order differencing scheme: weighted compact nonlinear scheme
- Freestream and vortex preservation properties of high-order WENO and WCNS on curvilinear grids
- A class of finite difference schemes with low dispersion and controllable dissipation for DNS of compressible turbulence
- A new flux-vector splitting compact finite volume scheme
- Large eddy simulation using a new set of sixth order schemes for compressible viscous terms
- An adaptive central-upwind weighted essentially non-oscillatory scheme
- An adaptive high-order hybrid scheme for compressive, viscous flows with detailed chemistry
- Finite-volume WENO schemes for three-dimensional conservation laws
- Finite-volume WENO scheme for viscous compressible multicomponent flows
- Boundary variation diminishing (BVD) reconstruction: a new approach to improve Godunov schemes
- Implementation of WENO schemes in compressible multicomponent flow problems
- A bandwidth-optimized WENO scheme for the effective direct numerical simulation of compressible turbulence
- An exact Riemann solver for compressible two-phase flow models containing non-conservative products
- Numerical simulation of the viscous shock tube problem by using a high resolution monotonicity-preserving scheme
- A front-tracking/ghost-fluid method for fluid interfaces in compressible flows
- High order conservative differencing for viscous terms and the application to vortex-induced vibration flows
- The numerical simulation of two-dimensional fluid flow with strong shocks
- Efficient implementation of essentially nonoscillatory shock-capturing schemes
- Approximate Riemann solvers, parameter vectors, and difference schemes
- Compact finite difference schemes with spectral-like resolution
- Towards the ultimate conservative difference scheme. IV: A new approach to numerical convection
- Highly accurate compact implicit methods and boundary conditions
- A survey of several finite difference methods for systems of nonlinear hyperbolic conservation laws
- Low-dissipative high-order shock-capturing methods using characteristic-based filters
- Restoration of the contact surface in the HLL-Riemann solver
- Weighted essentially non-oscillatory schemes
- A well-behaved TVD limiter for high-resolution calculations of unsteady flow
- Accurate monotonicity-preserving schemes with Runge-Kutta time stepping
- A family of low dispersive and low dissipative explicit schemes for flow and noise computations.
- Entropy splitting for high-order numerical simulation of compressible turbulence
- Conservative hybrid compact-WENO schemes for shock-turbulence interaction
- An efficient class of WENO schemes with adaptive order
- High-order localized dissipation weighted compact nonlinear scheme for shock- and interface-capturing in compressible flows
- Targeted ENO schemes with tailored resolution property for hyperbolic conservation laws
- Mapped weighted essentially non-oscillatory schemes: Achieving optimal order near critical points
- A five-equation model for the simulation of interfaces between compressible fluids
- How to prevent pressure oscillations in multicomponent flow calculations: A quasi conservative approach
- Efficient implementation of weighted ENO schemes
- An optimized low-dissipation monotonicity-preserving scheme for numerical simulations of high-speed turbulent flows
- Simulation of Richtmyer-Meshkov instability by sixth-order filter methods
- From hyperbolic diffusion scheme to gradient method: implicit Green-Gauss gradients for unstructured grids
- Robust explicit formulation of weighted compact nonlinear scheme
- High-order central-upwind shock capturing scheme using a boundary variation diminishing (BVD) algorithm
- A low-dissipation shock-capturing framework with flexible nonlinear dissipation control
- High-order accurate kinetic-energy and entropy preserving (KEEP) schemes on curvilinear grids
- Towards the ultimate understanding of MUSCL: Pitfalls in achieving third-order accuracy
- On the importance of high-frequency damping in high-order conservative finite-difference schemes for viscous fluxes
- Consistent high resolution interface-capturing finite volume method for compressible multi-material flows
- A fifth-order shock capturing scheme with two-stage boundary variation diminishing algorithm
- A high-order weighted compact high resolution scheme with boundary closures for compressible turbulent flows with shocks
- An \textit{a posteriori}, efficient, high-spectral resolution hybrid finite-difference method for compressible flows
- A general framework for the evaluation of shock-capturing schemes
- Towards the ultimate conservative difference scheme. V. A second-order sequel to Godunov's method
- A family of high-order targeted ENO schemes for compressible-fluid simulations
- Compact high order finite volume method on unstructured grids. III: Variational reconstruction
- A conservative interface-interaction method for compressible multi-material flows
- An improved weighted essentially non-oscillatory scheme for hyperbolic conservation laws
- A subcell remapping method on staggered polygonal grids for arbitrary-Lagrangian-Eulerian methods
- A high-order finite difference method for numerical simulations of supersonic turbulent flows
- Compact Reconstruction Schemes with Weighted ENO Limiting for Hyperbolic Conservation Laws
- A high-resolution scheme for compressible multicomponent flows with shock waves
- Fundamentals of Engineering Numerical Analysis
- Experiments on the late-time development of single-mode Richtmyer–Meshkov instability
- Riemann Solvers and Numerical Methods for Fluid Dynamics
- On Godunov-Type Methods for Gas Dynamics
- Upwind Difference Schemes for Hyperbolic Systems of Conservation Laws
- On Riemann solvers for compressible liquids
- Numerical Solution of the Riemann Problem for Two-Dimensional Gas Dynamics
- On the Choice of Wavespeeds for the HLLC Riemann Solver
- On the Order of Accuracy and Numerical Performance of Two Classes of Finite Volume WENO Schemes
- Weak solutions of nonlinear hyperbolic equations and their numerical computation
- Developing high-order weighted compact nonlinear schemes
- Computations of compressible multifluids.
- A low-dissipation finite-volume method based on a new TENO shock-capturing scheme
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