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内外流场耦合法数值研究Rijke管声学特性
引用本文:钟英杰, 邓凯, 张国俊, 林海浩, 李华. 内外流场耦合法数值研究Rijke管声学特性[J]. 声学学报, 2007, 32(6): 559-565. DOI: 10.15949/j.cnki.0371-0025.2007.06.012
作者姓名:钟英杰  邓凯  张国俊  林海浩  李华
作者单位:1.浙江工业大学能源与动力工程研究所脉动技术工程研究中心 杭州 310014
基金项目:国家自然科学基金;浙江省自然科学基金
摘    要:基于流体力学、传热学和声学研究成果,采用内外流场耦合建模的方法研究Rijke管脉动内流场,解决了大振幅驻波热声场管口边界条件的处理和出现数值发散的问题。从能量平衡的角度出发,提出非定常的热流量与声压、质点振速之间关系的假设。依靠自身参量,如气体的脉动压力、脉动流速和温度波动,来激发Rijke管振荡.模拟了Rijke管的声学特性,分析了Rijke管自激励振荡的机理。运用该模拟方法对不同尺寸、不同管口形状的Rijke管进行了数值实验,模拟结果与实验结果较好吻合,能捕捉Rijke管的管口声学特征量。

收稿时间:2007-01-24
修稿时间:2007-01-24

Investigation on Rijke pipe's acoustic characteristics by numerical simulation: modeling the pulsing flow field coupled the inner of pipe with its outer space
ZHONG Yingjie, DENG Kai, ZHANG Guojun, LIN Haihao, LI Hua. Investigation on Rijke pipe's acoustic characteristics by numerical simulation:modeling the pulsing flow field coupled the inner of pipe with its outer space[J]. ACTA ACUSTICA, 2007, 32(6): 559-565. DOI: 10.15949/j.cnki.0371-0025.2007.06.012
Authors:ZHONG Yingjie  DENG Kai  ZHANG Guojun  LIN Haihao  LI Hua
Affiliation:1.Institute of Energy and Power Engineering, Engineering Research Center of Pulse Technology, Zhejiang University of Technology Hangzhou 310014
Abstract:Based on the results of fluid dynamics,heat transfer and acoustics,a Computational Fluid Dynamics(CFD) method was utilized to study the acoustic characteristics and self-excited pulsation mechanism inside a Rijke pipe.To avoid settling the irrational boundary conditions of the finite-amplitude standing wave in Rijke thermoacoustic system, the simulation modeling in the flow field,which coupled the inner of pipe with its outer space was carried out to replace the traditional way in form of internal flow field numerical investigations.A hypothesis for heat source in energy equation including the relationship on unsteady heat of air around heat source,oscillation pressure and oscillation velocity was presented.To reflect the essence of Rijke pipe,simulation on self-excited oscillation was obtained by means of its own pulsation of pressure,velocity and temperature.This method can make the convergence process steady and effectively avoid the divergence.The physical phenomenon of self-excited Rijke pipe was analyzed.Moreover,the mechanisms on Rijke pipe's self-excited oscillation were explained.Based on this method,comparative researches on the acoustic characteristic of Rijke pipe with different size and different shape of nozzle were performed.The simulation results agreed with the experimental data satisfactorily.Resultsshowed that this numerical simulation can be used for studying the sound pressure of nozzle for the engineering application of Rijke pipe.
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