Matches in SemOpenAlex for { <https://semopenalex.org/work/W4221031640> ?p ?o ?g. }
- W4221031640 endingPage "20" @default.
- W4221031640 startingPage "1" @default.
- W4221031640 abstract "It remains a challenge for ILES methods to provide physical consistent viscosity in real applications which comprise complex flow structures in both high and low Mach numbers regimes. For these, we analyze an Implicit Large Eddy Simulation (ILES) method based upon all-speed schemes in a framework of the finite volume method in this study. This method can accurately capture both compressible phenomena such as shock waves as well as small turbulent structures. With a detailed analysis of the numerical viscosity and effective eddy viscosities in physical and spectral spaces, the method is verified to be suitable for the simulation of compressible turbulent flows. After it, the derived ILES method is applied to the simulation of a cylinder flow and a transonic cavity flow. Both results are in good agreements with the previous LES or experimental data. These results indicate that it is promising to study the application of the all-speed scheme to the ILES of complex engineering flow problems." @default.
- W4221031640 created "2022-04-03" @default.
- W4221031640 creator A5070209285 @default.
- W4221031640 creator A5079606753 @default.
- W4221031640 creator A5080122457 @default.
- W4221031640 date "2022-05-01" @default.
- W4221031640 modified "2023-10-14" @default.
- W4221031640 title "An implicit large eddy simulation method based on all-speed schemes" @default.
- W4221031640 cites W1655757813 @default.
- W4221031640 cites W1969760987 @default.
- W4221031640 cites W1969967146 @default.
- W4221031640 cites W1979176272 @default.
- W4221031640 cites W1982350416 @default.
- W4221031640 cites W1982999370 @default.
- W4221031640 cites W1984884576 @default.
- W4221031640 cites W1985942454 @default.
- W4221031640 cites W1997603878 @default.
- W4221031640 cites W1998830482 @default.
- W4221031640 cites W1999399767 @default.
- W4221031640 cites W1999921738 @default.
- W4221031640 cites W2005671230 @default.
- W4221031640 cites W2006895141 @default.
- W4221031640 cites W2012245876 @default.
- W4221031640 cites W2016811874 @default.
- W4221031640 cites W2039150507 @default.
- W4221031640 cites W2040757058 @default.
- W4221031640 cites W2045849310 @default.
- W4221031640 cites W2050228655 @default.
- W4221031640 cites W2061036343 @default.
- W4221031640 cites W2074051683 @default.
- W4221031640 cites W2083367386 @default.
- W4221031640 cites W2111975804 @default.
- W4221031640 cites W2144750265 @default.
- W4221031640 cites W2160129507 @default.
- W4221031640 cites W2523996554 @default.
- W4221031640 cites W2738359878 @default.
- W4221031640 cites W2749486094 @default.
- W4221031640 cites W2752022439 @default.
- W4221031640 cites W2900006932 @default.
- W4221031640 cites W2905352282 @default.
- W4221031640 cites W2913314152 @default.
- W4221031640 cites W2930816901 @default.
- W4221031640 cites W2995964075 @default.
- W4221031640 cites W3000351692 @default.
- W4221031640 cites W3006023732 @default.
- W4221031640 cites W3125422578 @default.
- W4221031640 cites W3162516398 @default.
- W4221031640 cites W3186180302 @default.
- W4221031640 cites W4245037559 @default.
- W4221031640 cites W622177816 @default.
- W4221031640 doi "https://doi.org/10.1016/j.camwa.2022.03.037" @default.
- W4221031640 hasPublicationYear "2022" @default.
- W4221031640 type Work @default.
- W4221031640 citedByCount "0" @default.
- W4221031640 crossrefType "journal-article" @default.
- W4221031640 hasAuthorship W4221031640A5070209285 @default.
- W4221031640 hasAuthorship W4221031640A5079606753 @default.
- W4221031640 hasAuthorship W4221031640A5080122457 @default.
- W4221031640 hasConcept C103838597 @default.
- W4221031640 hasConcept C121332964 @default.
- W4221031640 hasConcept C121448008 @default.
- W4221031640 hasConcept C126322002 @default.
- W4221031640 hasConcept C127172972 @default.
- W4221031640 hasConcept C13393347 @default.
- W4221031640 hasConcept C165231844 @default.
- W4221031640 hasConcept C196558001 @default.
- W4221031640 hasConcept C204573209 @default.
- W4221031640 hasConcept C2781300812 @default.
- W4221031640 hasConcept C28826006 @default.
- W4221031640 hasConcept C33923547 @default.
- W4221031640 hasConcept C38349280 @default.
- W4221031640 hasConcept C41008148 @default.
- W4221031640 hasConcept C50478463 @default.
- W4221031640 hasConcept C5192115 @default.
- W4221031640 hasConcept C57879066 @default.
- W4221031640 hasConcept C62520636 @default.
- W4221031640 hasConcept C70477161 @default.
- W4221031640 hasConcept C71924100 @default.
- W4221031640 hasConcept C84655787 @default.
- W4221031640 hasConceptScore W4221031640C103838597 @default.
- W4221031640 hasConceptScore W4221031640C121332964 @default.
- W4221031640 hasConceptScore W4221031640C121448008 @default.
- W4221031640 hasConceptScore W4221031640C126322002 @default.
- W4221031640 hasConceptScore W4221031640C127172972 @default.
- W4221031640 hasConceptScore W4221031640C13393347 @default.
- W4221031640 hasConceptScore W4221031640C165231844 @default.
- W4221031640 hasConceptScore W4221031640C196558001 @default.
- W4221031640 hasConceptScore W4221031640C204573209 @default.
- W4221031640 hasConceptScore W4221031640C2781300812 @default.
- W4221031640 hasConceptScore W4221031640C28826006 @default.
- W4221031640 hasConceptScore W4221031640C33923547 @default.
- W4221031640 hasConceptScore W4221031640C38349280 @default.
- W4221031640 hasConceptScore W4221031640C41008148 @default.
- W4221031640 hasConceptScore W4221031640C50478463 @default.
- W4221031640 hasConceptScore W4221031640C5192115 @default.
- W4221031640 hasConceptScore W4221031640C57879066 @default.
- W4221031640 hasConceptScore W4221031640C62520636 @default.
- W4221031640 hasConceptScore W4221031640C70477161 @default.