Aerodynamic noise and its reduction of the marine gas turbine air exhaust system.

Y. Luan, Lanyi Yan, Tao Sun, Pietro Zunino
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Abstract

The aerodynamic noise of pipelines is an important part of the noise of a ship's system. This paper conducted numerical investigations on the flow and acoustic characteristics of the marine gas turbine exhaust system. The near-field and far-field acoustic characteristics of the internal flow noise of the exhaust system are calculated by employing the Möhring's sound analogy method. In addition, the far-field acoustic characteristics of the external jet flow noise of the exhaust system are calculated by employing the stochastic noise generation and radiation (SNGR) method. Two kinds of protrusions are added to the main nozzle outlet to achieve noise reduction. The internal sound field of the marine exhaust system is dominated by low frequency sound sources, which are more obvious as the exhaust mass flow rate decreases. As for the external sound field of the marine exhaust system, the peak frequency of the far-field noise spectrum decreases with the decrease in the exhaust mass flow rate. The eight periodic protrusions perform better in reducing the internal aerodynamic noise of the exhaust system, while the five aperiodic protrusions perform better in reducing the external jet noise of the exhaust system.
船用燃气轮机排气系统的空气动力噪音及其降低。
管道的空气动力噪声是船舶系统噪声的重要组成部分。本文对船用燃气轮机排气系统的流动和声学特性进行了数值研究。采用 Möhring 声类比法计算了排气系统内部流动噪声的近场和远场声学特性。此外,还采用随机噪声产生和辐射(SNGR)方法计算了排气系统外部喷射流噪声的远场声学特性。在主喷嘴出口处增加了两种突起物以实现降噪。船用排气系统的内部声场以低频声源为主,随着排气质量流量的减小,低频声源的影响更加明显。至于船用排气系统的外部声场,远场噪声频谱的峰值频率随着排气质量流量的降低而降低。八个周期性突起在降低排气系统内部空气动力噪声方面表现较好,而五个非周期性突起在降低排气系统外部喷气噪声方面表现较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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