Matches in SemOpenAlex for { <https://semopenalex.org/work/W2805136382> ?p ?o ?g. }
- W2805136382 endingPage "2" @default.
- W2805136382 startingPage "1" @default.
- W2805136382 abstract "This special issue is dedicated to recent developments concerning modern numerical methods for time dependent partial differential equations that can be used to simulate complex nonlinear flow and transport processes and tries to cover a wide spectrum of different applications and numerical approaches. Most of the models under consideration here are nonlinear hyperbolic conservation laws, which are a very powerful mathematical tool to describe a large set of problems in science and engineering. Hyperbolic PDE are based on first principles, such as mass, momentum and total energy conservation as well as the second law of thermodynamics. These principles are universally valid and have been successfully used for the simulation of a very wide class of problems, ranging from astrophysics over geophysics to complex flows in engineering and computational biology. Most of the seemingly different applications listed above have a common mathematical description under the form of nonlinear hyperbolic systems of partial differential equations, possibly containing also higher-order derivative terms, non-conservative products and nonlinear (potentially stiff) source terms. From the mathematical point of view, the major difficulties in these systems arise from the nonlinearities that allow the formation of non-smooth solutions such as shock waves, material interfaces or other discontinuities, but nonlinear conservation laws can simultaneously also contain smooth features like sound waves and vortex flows. Even nowadays the key challenge for the construction of successful numerical methods for nonlinear hyperbolic PDE is therefore to capture at the same time shock waves and discontinuities robustly without producing spurious oscillations and exhibit little numerical dissipation and dispersion errors in smooth regions of the solution. For this reason, the development of robust and accurate numerical methods for nonlinear flow and transport problems remains a great challenge even after several decades of successful research, which started back in the 1940s and 1950s with the pioneering works of von Neumann [1] and Godunov [2]. The present special issue is published on the occasion of the 70th birthday of Prof. Eleuterio F. Toro and in honor of his outstanding contributions to the fields of applied mathematics, scientific computing and computational physics with his well-known numerical methods for the solution of hyperbolic conservation laws and their application to computational fluid dynamics, computational physics and computational biology." @default.
- W2805136382 created "2018-06-13" @default.
- W2805136382 creator A5051559583 @default.
- W2805136382 creator A5070590413 @default.
- W2805136382 creator A5083014228 @default.
- W2805136382 date "2018-06-01" @default.
- W2805136382 modified "2023-09-23" @default.
- W2805136382 title "Preface to the special issue “Recent progress in numerical methods for nonlinear time-dependent flow & transport problems”" @default.
- W2805136382 cites W1580089077 @default.
- W2805136382 cites W1599144297 @default.
- W2805136382 cites W1905812059 @default.
- W2805136382 cites W1969760987 @default.
- W2805136382 cites W1970212576 @default.
- W2805136382 cites W1988644412 @default.
- W2805136382 cites W2003600940 @default.
- W2805136382 cites W2009112546 @default.
- W2805136382 cites W2024183921 @default.
- W2805136382 cites W2046863157 @default.
- W2805136382 cites W2058756359 @default.
- W2805136382 cites W2068255553 @default.
- W2805136382 cites W2081462228 @default.
- W2805136382 cites W2088432459 @default.
- W2805136382 cites W2128506141 @default.
- W2805136382 cites W2142492132 @default.
- W2805136382 cites W2157430242 @default.
- W2805136382 cites W2591937896 @default.
- W2805136382 cites W2594551074 @default.
- W2805136382 cites W2602281705 @default.
- W2805136382 cites W2607940704 @default.
- W2805136382 cites W2611768686 @default.
- W2805136382 cites W2616622631 @default.
- W2805136382 cites W2672330717 @default.
- W2805136382 cites W2726830807 @default.
- W2805136382 cites W2728507037 @default.
- W2805136382 cites W2731701312 @default.
- W2805136382 cites W2738359878 @default.
- W2805136382 cites W2739262687 @default.
- W2805136382 cites W2742853110 @default.
- W2805136382 cites W2747894058 @default.
- W2805136382 cites W2749583457 @default.
- W2805136382 cites W2750431907 @default.
- W2805136382 cites W2751424263 @default.
- W2805136382 cites W2751540693 @default.
- W2805136382 cites W2752951733 @default.
- W2805136382 cites W2753982425 @default.
- W2805136382 cites W2755281719 @default.
- W2805136382 cites W2757550685 @default.
- W2805136382 cites W2759622128 @default.
- W2805136382 cites W2761442533 @default.
- W2805136382 cites W2762511359 @default.
- W2805136382 cites W2763005372 @default.
- W2805136382 cites W2765463223 @default.
- W2805136382 cites W2963515288 @default.
- W2805136382 doi "https://doi.org/10.1016/j.compfluid.2018.05.022" @default.
- W2805136382 hasPublicationYear "2018" @default.
- W2805136382 type Work @default.
- W2805136382 sameAs 2805136382 @default.
- W2805136382 citedByCount "1" @default.
- W2805136382 countsByYear W28051363822020 @default.
- W2805136382 crossrefType "journal-article" @default.
- W2805136382 hasAuthorship W2805136382A5051559583 @default.
- W2805136382 hasAuthorship W2805136382A5070590413 @default.
- W2805136382 hasAuthorship W2805136382A5083014228 @default.
- W2805136382 hasConcept C111615704 @default.
- W2805136382 hasConcept C121332964 @default.
- W2805136382 hasConcept C134306372 @default.
- W2805136382 hasConcept C15627037 @default.
- W2805136382 hasConcept C158622935 @default.
- W2805136382 hasConcept C28826006 @default.
- W2805136382 hasConcept C33923547 @default.
- W2805136382 hasConcept C3445786 @default.
- W2805136382 hasConcept C38349280 @default.
- W2805136382 hasConcept C41008148 @default.
- W2805136382 hasConcept C48753275 @default.
- W2805136382 hasConcept C57879066 @default.
- W2805136382 hasConcept C62520636 @default.
- W2805136382 hasConcept C93779851 @default.
- W2805136382 hasConceptScore W2805136382C111615704 @default.
- W2805136382 hasConceptScore W2805136382C121332964 @default.
- W2805136382 hasConceptScore W2805136382C134306372 @default.
- W2805136382 hasConceptScore W2805136382C15627037 @default.
- W2805136382 hasConceptScore W2805136382C158622935 @default.
- W2805136382 hasConceptScore W2805136382C28826006 @default.
- W2805136382 hasConceptScore W2805136382C33923547 @default.
- W2805136382 hasConceptScore W2805136382C3445786 @default.
- W2805136382 hasConceptScore W2805136382C38349280 @default.
- W2805136382 hasConceptScore W2805136382C41008148 @default.
- W2805136382 hasConceptScore W2805136382C48753275 @default.
- W2805136382 hasConceptScore W2805136382C57879066 @default.
- W2805136382 hasConceptScore W2805136382C62520636 @default.
- W2805136382 hasConceptScore W2805136382C93779851 @default.
- W2805136382 hasLocation W28051363821 @default.
- W2805136382 hasOpenAccess W2805136382 @default.
- W2805136382 hasPrimaryLocation W28051363821 @default.
- W2805136382 hasRelatedWork W162446405 @default.
- W2805136382 hasRelatedWork W2016278294 @default.
- W2805136382 hasRelatedWork W2017345494 @default.
- W2805136382 hasRelatedWork W2089718349 @default.