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热声起振现象的模拟研究 被引量:2

NUMERICAL INVESTIGATION ON THERMOACOUSTIC ONSET
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摘要 热声现象中广泛存在非线性效应,其中最典型的就是热声自激起振。本文建立了一个四分之三波长的Rijke管计算模型,基于并行计算,采用数值模拟对其起振现象进行了模拟。研究了不同初场对起振行为的影响,得出起振后的气体振荡频率,并对管内的流动与换热规律进行了详尽分析。模拟结果与文献结果相吻合。本文工作有助于更多地了解热声起振现象,同时也为我们开展热声问题的介观模拟提供了有力的参考。 Thermoacoustic phenomena are almost nonlinear, which features self-excited onset. In this paper, a closed-open Rijke tube with the heat source placed at the middle of the tube is modeled. Based on parallel computation, onset of the Rijke tube is carried out numerically. Onset phenomena with various initial fields are observed. Oscillating frequency of the gas within limit cycle is obtained. The gas flow and heat transfer characteristics are studied. These numerical results agree well with those from previous numerical simulations. Such work is helpful for better understanding on the thermoacoustic phenomena, and offers a reference for the study of the thermoacoustic problems with mesoscopic methods such as the lattice Boltzmann method.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2009年第8期1279-1282,共4页 Journal of Engineering Thermophysics
基金 国家杰出青年科学基金项目(No.50425620) 国家自然科学基金重点项目(No.50636050)
关键词 热声 RIJKE管 起振 数值模拟 thermoacoustic Rijke tube onset numerical simulation
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参考文献8

  • 1刘云芳,程乐鸣,郑海啸,骆仲泱,岑可法.Rijke管及其燃烧装置的理论研究进展[J].热力发电,2006,35(9):4-10. 被引量:1
  • 2Kunz W. Untensuchungen zum anregungsmechanismus thermoakustischer schwingungen am beispiel des Rijke phanomens. Mfinchen, Germany: Technische Universitat, 1981.
  • 3Chatterjee P, Vandsburger U, Saunders W R, et al. On the Spectral Characteristics of a Self-Excited Rijke Tube Combustor-Numerical Simulation and Experimental Measurements. J Sound and Vibration, 2005, 283(3): 573-588.
  • 4Hantschk C C, Vortmeyer D. Numerical Simulation of Self-Excited Thermoacoustic Instabilities in a Rijke Tube. J Sound Vib, 1999, 277(3): 511-522.
  • 5李国能,周昊,尤鸿燕,岑可法.黎开管自激热声不稳定的数值模拟[J].中国电机工程学报,2007,27(23):50-54. 被引量:12
  • 6Entezam B, Moorhem W K V, Majdalani J. Two- Dimensional Numerical Verification of the Unsteady Thermoacoustic Field Inside a Rijke-Type Pulse Combustor. Numer Heat Transfer, Part A, 2002, 41:245-262.
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  • 8Yu G Y, Luo E C, Dai W, et al. Study of Nonlinear Processes of a Large Experimental Thermoacoustic-Stirling Heat Engine by Using Computational Fluid Dynamics. J. Applied Phys., 2007, 102:074901.

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