安装消声器时,非等温射流对能源机噪声产生过程的贡献

IF 0.1 Q4 ACOUSTICS
Akustika Pub Date : 2021-01-01 DOI:10.36336/akustika20214130
A. Shashurin, N. Ivanov, A. Vasilyev, Yu M Elkin, Zhenish Razakov
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引用次数: 1

摘要

詹姆斯·莱特希尔(James Lighthill)的方法是已知的,并被广泛使用,它可以确定等温射流的声功率。在考虑排气道消声器的情况下,提出了计算非等温声射流声学参数(声功率、辐射方向)的数学模型。在输出端,使用了连续性方程、运动量方程、能量方程以及Lighthill波动方程。采用统计模型作为湍流模型进行计算。提出了湍流噪声产生的物理机制,即考虑“自身”噪声和“剪切”噪声。“自身”噪声是由气体动力流动的湍流脉动引起的,“移位”噪声是由流速梯度的存在引起的。得到了“自有”和“移位”噪声分量的解析依赖关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CONTRIBUTION OF NON-ISOTHERMAL JETS TO THE PROCESSES OF NOISE GENERATION OF ENERGY MACHINES WHEN INSTALLING SILENCERS
The method of James Lighthill is known and widely used, which allows determining the acoustic power of isothermal jets. A mathematical model for calculating the acoustic parameters (sound power, radiation pattern) of non-isothermal sound jets is proposed, taking into account the noise silencer installed in the gas exhaust tract. At the output, the equations of continuity, the amount of motion, energy, as well as the Lighthill wave equation are used. A statistical model is used as a turbulence model for calculations. A physical mechanism of noise generation by turbulent flows is proposed, which consists in considering "own" and "shear" noise. The " own " noise is caused by turbulent pulsations of the gas-dynamic flow, the "shift" noise is caused by the presence of a flow velocity gradient. Analytical dependences of the components of "own" and "shift" noise are obtained.
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来源期刊
Akustika
Akustika ACOUSTICS-
CiteScore
0.80
自引率
0.00%
发文量
4
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