Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220934369> ?p ?o ?g. }
- W4220934369 endingPage "507" @default.
- W4220934369 startingPage "464" @default.
- W4220934369 abstract "This work focuses on the mathematical combination of magnetogasdynamics (MGD) and the Dunn and Kang chemical kinetic model with a multi-component Harten–Lax–van Leer Contact (HLLC) local Riemann solver using high-order interpolation schemes. Due to the nature of nearly hypersonic, unsteady, viscous, reacting MGD flows, the gas dissociates which is taken into account with 11 species and 26 chemical reactions along with the temperature dependent transport properties through the Wilke model. In the present work, the electromagnetic effects are considered by solving a Poisson equation simultaneously with the chemical reaction equations. The non-linear convective terms are treated numerically with third-, fifth- and seventh-order Weighted Essentially Non-Oscillatory (WENO) interpolation schemes along with second-, fourth- and sixth-order central finite difference schemes for the viscous terms. The combination of these numerical and physical models are analysed for stability and validated for benchmark problems such as (a) Hartmann flow as MGD validation test case and (b) the shock-tube problem for testing the chemical reaction model in which case the reaction rate controlling temperature suggested by Park has also been taken into account. Furthermore, a complex physical problem of an external aerodynamic flow over the cube for the Mach number varying from 1.25 to 3 have also been investigated, because a limited number of studies is available for understanding the flow behaviour of sharp cornered blunt bodies such as cubes. The knowledge of shock structures of these objects has become imperative to predict the atmospheric re-entry trajectories of de-orbiting CubeSats, space debris or fragments of launch vehicles. The main physical finding is that the shock structures are observed to be much more resolved compared to previous works, especially in the wake region. The knowledge gap is bridged by detailing the shock structures and showing the dependence of the shock standoff distance on total enthalpy of the flow." @default.
- W4220934369 created "2022-04-03" @default.
- W4220934369 creator A5047835024 @default.
- W4220934369 creator A5073982307 @default.
- W4220934369 creator A5087776010 @default.
- W4220934369 date "2022-07-01" @default.
- W4220934369 modified "2023-09-30" @default.
- W4220934369 title "A novel combination of mathematical modelling approaches for simulating nearly hypersonic, viscous, reacting magnetogasdynamic flows" @default.
- W4220934369 cites W1550459252 @default.
- W4220934369 cites W1602999377 @default.
- W4220934369 cites W1669586172 @default.
- W4220934369 cites W1967736353 @default.
- W4220934369 cites W1969760987 @default.
- W4220934369 cites W1974132327 @default.
- W4220934369 cites W1979623614 @default.
- W4220934369 cites W1987552612 @default.
- W4220934369 cites W1994143539 @default.
- W4220934369 cites W1994335140 @default.
- W4220934369 cites W1994510271 @default.
- W4220934369 cites W1997721842 @default.
- W4220934369 cites W2000311630 @default.
- W4220934369 cites W2003123136 @default.
- W4220934369 cites W2007151233 @default.
- W4220934369 cites W2010173430 @default.
- W4220934369 cites W2011839118 @default.
- W4220934369 cites W2017349536 @default.
- W4220934369 cites W2018934648 @default.
- W4220934369 cites W2026955819 @default.
- W4220934369 cites W2040684676 @default.
- W4220934369 cites W2044968340 @default.
- W4220934369 cites W2045463452 @default.
- W4220934369 cites W2045849310 @default.
- W4220934369 cites W2046671381 @default.
- W4220934369 cites W2047266115 @default.
- W4220934369 cites W2048941652 @default.
- W4220934369 cites W2058235855 @default.
- W4220934369 cites W2059306347 @default.
- W4220934369 cites W2063733685 @default.
- W4220934369 cites W2063899318 @default.
- W4220934369 cites W2065239170 @default.
- W4220934369 cites W2072476302 @default.
- W4220934369 cites W2072979773 @default.
- W4220934369 cites W2079017373 @default.
- W4220934369 cites W2079931382 @default.
- W4220934369 cites W2081830832 @default.
- W4220934369 cites W2087131712 @default.
- W4220934369 cites W2088432916 @default.
- W4220934369 cites W2093615388 @default.
- W4220934369 cites W2094625151 @default.
- W4220934369 cites W2102228118 @default.
- W4220934369 cites W2112019994 @default.
- W4220934369 cites W2112548197 @default.
- W4220934369 cites W2115703061 @default.
- W4220934369 cites W2121230668 @default.
- W4220934369 cites W2126171617 @default.
- W4220934369 cites W2143360128 @default.
- W4220934369 cites W2148987391 @default.
- W4220934369 cites W2239434343 @default.
- W4220934369 cites W2329924270 @default.
- W4220934369 cites W2331072294 @default.
- W4220934369 cites W2537587222 @default.
- W4220934369 cites W2540427529 @default.
- W4220934369 cites W2546722016 @default.
- W4220934369 cites W2590937092 @default.
- W4220934369 cites W2594574274 @default.
- W4220934369 cites W2604642996 @default.
- W4220934369 cites W2625176640 @default.
- W4220934369 cites W2738944596 @default.
- W4220934369 cites W2787146769 @default.
- W4220934369 cites W2957258626 @default.
- W4220934369 cites W2972921955 @default.
- W4220934369 cites W3035431191 @default.
- W4220934369 cites W3040727551 @default.
- W4220934369 cites W3049582567 @default.
- W4220934369 cites W3085290842 @default.
- W4220934369 cites W3100826360 @default.
- W4220934369 cites W3194293784 @default.
- W4220934369 cites W4231776422 @default.
- W4220934369 cites W4255760432 @default.
- W4220934369 cites W573977063 @default.
- W4220934369 cites W586208390 @default.
- W4220934369 cites W824150773 @default.
- W4220934369 doi "https://doi.org/10.1016/j.apm.2022.02.041" @default.
- W4220934369 hasPublicationYear "2022" @default.
- W4220934369 type Work @default.
- W4220934369 citedByCount "1" @default.
- W4220934369 countsByYear W42209343692023 @default.
- W4220934369 crossrefType "journal-article" @default.
- W4220934369 hasAuthorship W4220934369A5047835024 @default.
- W4220934369 hasAuthorship W4220934369A5073982307 @default.
- W4220934369 hasAuthorship W4220934369A5087776010 @default.
- W4220934369 hasBestOaLocation W42209343692 @default.
- W4220934369 hasConcept C104114177 @default.
- W4220934369 hasConcept C120796332 @default.
- W4220934369 hasConcept C121332964 @default.
- W4220934369 hasConcept C122824865 @default.
- W4220934369 hasConcept C122881758 @default.
- W4220934369 hasConcept C126255220 @default.