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Information preservation modeling of rayleigh-bénard transition from thermal conduction to convection

  • Jun Zhang*
  • , Jing Fan
  • *此作品的通讯作者
  • CAS - Institute of Mechanics

科研成果: 期刊稿件会议文章同行评审

摘要

Onset and evolution of the Rayleigh-Bénard (R-B) convection are investigated using the Information Preservation (IP) method. The information velocity and temperature are updated using the Octant Flux Splitting (OFS) model developed by Masters & Ye based on the Maxwell transport equation suggested by Sun & Boyd. Statistical noise inherent in particle approaches such as the direct simulation Monte Carlo (DSMC) method is effectively reduced by the IP method, and therefore the evolutions from an initial quiescent fluid to a final steady state are shown clearly. An interesting phenomenon is observed: when the Rayleigh number (Ra) exceeds its critical value, there exists an obvious incubation stage. During the incubation stage, the vortex structure clearly appears and evolves, whereas the Nusselt number (Nu) of the lower plate is close to unity. After the incubation stage, the vortex velocity and Nu rapidly increase, and the flow field quickly reaches a steady, convective state. A relation of Nu to Ra given by IP agrees with those given by DSMC, the classical theory and experimental data.

源语言英语
页(从-至)359-364
页数6
期刊AIP Conference Proceedings
1084
出版状态已出版 - 2009
已对外发布
活动26th International Symposium on Rarefied Gas Dynamics, RGD26 - Kyoto, 日本
期限: 20 7月 200825 7月 2008

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