My way: a computational autobiography
DOI10.1007/s42967-019-00021-0zbMath1476.76002OpenAlexW2946438615WikidataQ127862609 ScholiaQ127862609MaRDI QIDQ2665557
Publication date: 19 November 2021
Published in: Communications on Applied Mathematics and Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s42967-019-00021-0
conservation lawscompressible flowcomputational fluid dynamicscharacteristic theorymultidimensional methods
PDEs in connection with fluid mechanics (35Q35) Biographies, obituaries, personalia, bibliographies (01A70) Finite difference methods for boundary value problems involving PDEs (65N06) Geometric theory, characteristics, transformations in context of PDEs (35A30) History of fluid mechanics (76-03) Fundamental solutions, Green's function methods, etc. for boundary value problems involving PDEs (65N80) Initial value problems for systems of nonlinear first-order PDEs (35F55) Initial value problems for systems of linear first-order PDEs (35F40)
Related Items (1)
Cites Work
- A stochastic Galerkin method for the Euler equations with roe variable transformation
- A multidimensional generalization of Roe's flux difference splitter for the Euler equations
- Affordable, entropy-consistent Euler flux functions. II: Entropy production at shocks
- A finite volume scheme with shock fitting for the steady Euler equations
- Approximate Riemann solvers, parameter vectors, and difference schemes
- Comparison of numerical schemes for solving the advection equation
- Did numerical methods for hyperbolic problems take a wrong turning?
- Multidimensional upwind schemes based on fluctuation-splitting for systems of conservation laws
- Vorticity-preserving schemes for the compressible Euler equations
- Vorticity-Preserving Lax--Wendroff-Type Schemes for the System Wave Equation
- Uniform Asymptotic Stability of Strang's Explicit Compact Schemes for Linear Advection
- Maximum-principle-satisfying and positivity-preserving high-order schemes for conservation laws: survey and new developments
- Constraint Preserving Schemes Using Potential-Based Fluxes. II. Genuinely Multidimensional Systems of Conservation Laws
- An Entropy Adjoint Approach to Mesh Refinement
- Finite Volume Methods and their Analysis
- The Optimal Accuracy of Difference Schemes
- Order Stars and a Saturation Theorem for First-order Hyperbolics
- Optimum Positive Linear Schemes for Advection in Two and Three Dimensions
- Models of Difference Schemes for u t + u x = 0 by Partial Differential Equations
- Linear Bicharacteristic Schemes Without Dissipation
- Stationarity preserving schemes for multi-dimensional linear systems
- Notes on the Eigensystem of Magnetohydrodynamics
- A relaxation scheme for the approximation of the pressureless Euler equations
- Unnamed Item
- Unnamed Item
This page was built for publication: My way: a computational autobiography