Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus

Transitions and bifurcations of transient natural convection in a horizontal annulus with radiatively participating medium are numerically investigated using the coupled lattice Boltzmann and direct collocation meshless (LB-DCM) method. As a hybrid approach based on a common multi-scale Boltzmann-ty...

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Main Authors: Kang Luo, Hong-Liang Yi, He-Ping Tan
Format: Article
Language:English
Published: AIP Publishing LLC 2014-05-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4879809
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spelling doaj-b698ea6789e54141b3c1d5ac666695862020-11-24T21:07:47ZengAIP Publishing LLCAIP Advances2158-32262014-05-0145057123057123-1810.1063/1.4879809024405ADVRadiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulusKang Luo0Hong-Liang Yi1He-Ping Tan2School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, P. R. ChinaSchool of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, P. R. ChinaSchool of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, P. R. ChinaTransitions and bifurcations of transient natural convection in a horizontal annulus with radiatively participating medium are numerically investigated using the coupled lattice Boltzmann and direct collocation meshless (LB-DCM) method. As a hybrid approach based on a common multi-scale Boltzmann-type model, the LB-DCM scheme is easy to implement and has an excellent flexibility in dealing with the irregular geometries. Separate particle distribution functions in the LBM are used to calculate the density field, the velocity field and the thermal field. In the radiatively participating medium, the contribution of thermal radiation to natural convection must be taken into account, and it is considered as a radiative term in the energy equation that is solved by the meshless method with moving least-squares (MLS) approximation. The occurrence of various instabilities and bifurcative phenomena is analyzed for different Rayleigh number Ra and Prandtl number Pr with and without radiation. Then, bifurcation diagrams and dual solutions are presented for relevant radiative parameters, such as convection-radiation parameter Rc and optical thickness τ. Numerical results show that the presence of volumetric radiation changes the static temperature gradient of the fluid, and generally results in an increase in the flow critical value. Besides, the existence and development of dual solutions of transient convection in the presence of radiation are greatly affected by radiative parameters. Finally, the advantage of LB-DCM combination is discussed, and the potential benefits of applying the LB-DCM method to multi-field coupling problems are demonstrated.http://dx.doi.org/10.1063/1.4879809
collection DOAJ
language English
format Article
sources DOAJ
author Kang Luo
Hong-Liang Yi
He-Ping Tan
spellingShingle Kang Luo
Hong-Liang Yi
He-Ping Tan
Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
AIP Advances
author_facet Kang Luo
Hong-Liang Yi
He-Ping Tan
author_sort Kang Luo
title Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
title_short Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
title_full Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
title_fullStr Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
title_full_unstemmed Radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
title_sort radiation effects on bifurcation and dual solutions in transient natural convection in a horizontal annulus
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2014-05-01
description Transitions and bifurcations of transient natural convection in a horizontal annulus with radiatively participating medium are numerically investigated using the coupled lattice Boltzmann and direct collocation meshless (LB-DCM) method. As a hybrid approach based on a common multi-scale Boltzmann-type model, the LB-DCM scheme is easy to implement and has an excellent flexibility in dealing with the irregular geometries. Separate particle distribution functions in the LBM are used to calculate the density field, the velocity field and the thermal field. In the radiatively participating medium, the contribution of thermal radiation to natural convection must be taken into account, and it is considered as a radiative term in the energy equation that is solved by the meshless method with moving least-squares (MLS) approximation. The occurrence of various instabilities and bifurcative phenomena is analyzed for different Rayleigh number Ra and Prandtl number Pr with and without radiation. Then, bifurcation diagrams and dual solutions are presented for relevant radiative parameters, such as convection-radiation parameter Rc and optical thickness τ. Numerical results show that the presence of volumetric radiation changes the static temperature gradient of the fluid, and generally results in an increase in the flow critical value. Besides, the existence and development of dual solutions of transient convection in the presence of radiation are greatly affected by radiative parameters. Finally, the advantage of LB-DCM combination is discussed, and the potential benefits of applying the LB-DCM method to multi-field coupling problems are demonstrated.
url http://dx.doi.org/10.1063/1.4879809
work_keys_str_mv AT kangluo radiationeffectsonbifurcationanddualsolutionsintransientnaturalconvectioninahorizontalannulus
AT hongliangyi radiationeffectsonbifurcationanddualsolutionsintransientnaturalconvectioninahorizontalannulus
AT hepingtan radiationeffectsonbifurcationanddualsolutionsintransientnaturalconvectioninahorizontalannulus
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