Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation

In this paper, the gas-kinetic BGK (Bhatnagar-Gross-Krook) scheme is developed for simulating compressible inviscid supersonic channel flow. BGK scheme is an approximate Riemann solver that uses the collisional Boltzmann equation as the governing equation for flow evolutions. For efficient computati...

Full description

Bibliographic Details
Main Authors: Chit, Ong J., Omar, Ashraf A., Asrar, Waqar, Ismail, Ahmad Faris
Format: Conference or Workshop Item
Language:English
Published: 2006
Subjects:
Online Access:http://eprints.utm.my/314/1/OngJChit2006_Gas-KineticBGKSchemeforSupersonicChannel.pdf
_version_ 1825908893866262528
author Chit, Ong J.
Omar, Ashraf A.
Asrar, Waqar
Ismail, Ahmad Faris
author_facet Chit, Ong J.
Omar, Ashraf A.
Asrar, Waqar
Ismail, Ahmad Faris
author_sort Chit, Ong J.
collection ePrints
description In this paper, the gas-kinetic BGK (Bhatnagar-Gross-Krook) scheme is developed for simulating compressible inviscid supersonic channel flow. BGK scheme is an approximate Riemann solver that uses the collisional Boltzmann equation as the governing equation for flow evolutions. For efficient computations, particle distribution functions in the general solution of the BGK model are simplified and used for the flow simulations. Second-order accuracy is achieved via the reconstruction of flow variables using the MUSCL (Monotone Upstream-Centered Schemes for Conservation Laws) interpolation technique together with a multistage Runge-Kutta method. The number of grid points used for the domain is 241x131 which is generated using a structured algebraic grid generation method. The computational values compared very well to those of the analytical solution.
first_indexed 2024-03-05T17:54:05Z
format Conference or Workshop Item
id utm.eprints-314
institution Universiti Teknologi Malaysia - ePrints
language English
last_indexed 2024-03-05T17:54:05Z
publishDate 2006
record_format dspace
spelling utm.eprints-3142017-08-23T07:20:37Z http://eprints.utm.my/314/ Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation Chit, Ong J. Omar, Ashraf A. Asrar, Waqar Ismail, Ahmad Faris TJ Mechanical engineering and machinery In this paper, the gas-kinetic BGK (Bhatnagar-Gross-Krook) scheme is developed for simulating compressible inviscid supersonic channel flow. BGK scheme is an approximate Riemann solver that uses the collisional Boltzmann equation as the governing equation for flow evolutions. For efficient computations, particle distribution functions in the general solution of the BGK model are simplified and used for the flow simulations. Second-order accuracy is achieved via the reconstruction of flow variables using the MUSCL (Monotone Upstream-Centered Schemes for Conservation Laws) interpolation technique together with a multistage Runge-Kutta method. The number of grid points used for the domain is 241x131 which is generated using a structured algebraic grid generation method. The computational values compared very well to those of the analytical solution. 2006-07 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/314/1/OngJChit2006_Gas-KineticBGKSchemeforSupersonicChannel.pdf Chit, Ong J. and Omar, Ashraf A. and Asrar, Waqar and Ismail, Ahmad Faris (2006) Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation. In: 1st Regional Conference on Vehicle Engineering & Technology, 3-5 July 2006, Kuala Lumpur, Malaysia.
spellingShingle TJ Mechanical engineering and machinery
Chit, Ong J.
Omar, Ashraf A.
Asrar, Waqar
Ismail, Ahmad Faris
Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title_full Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title_fullStr Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title_full_unstemmed Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title_short Gas-Kinetic BGK Scheme for Supersonic Channel Flow Simulation
title_sort gas kinetic bgk scheme for supersonic channel flow simulation
topic TJ Mechanical engineering and machinery
url http://eprints.utm.my/314/1/OngJChit2006_Gas-KineticBGKSchemeforSupersonicChannel.pdf
work_keys_str_mv AT chitongj gaskineticbgkschemeforsupersonicchannelflowsimulation
AT omarashrafa gaskineticbgkschemeforsupersonicchannelflowsimulation
AT asrarwaqar gaskineticbgkschemeforsupersonicchannelflowsimulation
AT ismailahmadfaris gaskineticbgkschemeforsupersonicchannelflowsimulation