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Journal of computational and applied mathematics, ISSN 0377-0427, 2019, p. 112500
Journal Article
Journal Article
Journal of Scientific Computing, ISSN 0885-7474, 1/2012, Volume 50, Issue 1, pp. 63 - 90
Journal Article
SIAM JOURNAL ON NUMERICAL ANALYSIS, ISSN 0036-1429, 2019, Volume 57, Issue 1, pp. 27 - 43
.... This formulation can be used to construct time-adaptive strong stability preserving (SSP) multistep methods of any order for the solution of time-dependent PDEs... 
MATHEMATICS, APPLIED | variable step-sizes | EFFICIENT IMPLEMENTATION | MONOTONICITY | strong stability preserving | adaptive SSP multistep methods | TVD schemes | Naturvetenskap | Adaptive SSP multistep methods | Strong stability preserving | Mathematics | Natural Sciences | Matematik | Variable step-sizes
Journal Article
SIAM journal on numerical analysis, ISSN 0036-1429, 2018, Volume 56, Issue 6, pp. 3276 - 3307
Strong stability preserving (SSP) Runge-Kutta methods are often desired when evolving in time problems that have two components that have very different time scales... 
Integrating factor | Strong stability preserving | Runge-Kutta | FULLY DISCRETE | MATHEMATICS, APPLIED | LOW-STORAGE | SPECTRAL METHODS | MONOTONICITY | strong stability preserving | CONTRACTIVITY | IMPLICIT | HIGH-ORDER SCHEMES | VISCOSITY METHOD | HIGH-RESOLUTION SCHEMES | CONSERVATION-LAWS | integrating factor
Journal Article
Mathematics of Computation of the American Mathematical Society, ISSN 0025-5718, 01/2005, Volume 74, Issue 249, pp. 201 - 219
Journal Article
Journal of computational and applied mathematics, ISSN 0377-0427, 06/2014, Volume 263, pp. 45 - 58
Ruuth and Spiteri have shown, in 2002, that fifth-order strong-stability-preserving (SSP) explicit Runge–Kutta (RK... 
Strong stability preserving | Method of lines | Time discretization | SSP coefficient | Hermite–Birkhoff method | Comparison with other SSP methods | Hermite-Birkhoff method
Journal Article
Applied numerical mathematics, ISSN 0168-9274, 2019, Volume 135, pp. 165 - 172
We show that the theory for strong stability preserving (SSP) time stepping methods employed with the method of lines-type discretizations of hyperbolic conservation laws may result in overly stringent time step restrictions... 
Hyperbolic conservation laws | Method of lines | Stability | Strong stability preserving methods | CFL condition | MATHEMATICS, APPLIED | RUNGE-KUTTA-METHODS | CONSERVATION-LAWS | POSITIVITY | SCHEMES | Environmental law | Analysis | Methods
Journal Article
SIAM journal on numerical analysis, ISSN 0036-1429, 2005, Volume 43, Issue 3, pp. 924 - 948
Over the last few years a great effort has been made to develop monotone high order explicit Runge-Kutta methods by means of their Shu-Osher representations... 
Absolutely monotonic | SSP | Radius of absolute monotonicity | CFL coefficient | Strong stability preserving | Runge-Kutta | Representations | MATHEMATICS, APPLIED | absolutely monotonic | radius of absolute monotonicity | strong stability preserving | representations
Journal Article
Journal of scientific computing, ISSN 1573-7691, 2019, Volume 81, Issue 3, pp. 1446 - 1471
... the evolution of hyperbolic partial differential equations with shocks or sharp gradients, linear inner-product stability is no longer sufficient for convergence, and so strong stability preserving (SSP... 
Multi-step Runge–Kutta methods | Computational Mathematics and Numerical Analysis | Algorithms | Time stepping for hyperbolic PDEs | Theoretical, Mathematical and Computational Physics | Integrating factor methods | Mathematical and Computational Engineering | Lawson type methods | Strong stability preserving | Mathematics
Journal Article
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