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Noise Elimination of a Multi-tone Broadband Noise with Hybrid Helmholtz Mufflers Using a Simulated Annealing Method

机译:混合亥姆霍兹消声器的模拟退火方法消除多频宽带噪声

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摘要

Noise control is essential in an enclosed machine room where the noise level has to comply with the occupational safety and health act. In order to overcome a pure tone noise with a high peak value that is harmful to human hearing, a traditional reactive muffler has been used. However, the traditional method for designing a reactive muffler has proven to be time-consuming and insufficient. In order to efficiently reduce the peak noise level, interest in shape optimization of a Helmholtz muffler is coming to the forefront. Helmholtz mufflers that deal with a pure tone have been adequately researched. However, the shape optimization of multi-chamber Helmholtz mufflers that deal with a broadband noise hybridized with multiple tones within a constrained space has been mostly ignored. Therefore, this study analyzes the sound transmission loss (STL) and the best optimized design for a hybrid Helmholtz muffler under a space-constrained situation. On the basis of the plane wave theory, the four-pole system matrix used to evaluate the acoustic performance of a multi-tone hybrid Helmholtz muffler is presented. Two numerical cases for eliminating one/two tone noises emitted from a machine room using six kinds of mufflers (muffler A~F) is also introduced. To find the best acoustical performance of a space-constrained muffler, a numerical assessment using a simulated annealing (SA) method is adopted. Before the SA operation can be carried out, the accuracy of the mathematical model has been checked using the experimental data. Eliminating a broadband noise hybridized with a pure tone (130 Hz) in Case I reveals that muffler C composed of a one-chamber Helmholtz Resonator and a one-chamber dissipative element has a noise reduction of 54.9 (dB). Moreover, as indicated in Case II, muffler F, a two-chamber Helmholtz Resonator and a one-chamber dissipative element, has a noise reduction of 69.7 (dB). Obviously, the peak /alues of the pure tones in Case I and Case II are efficiently reduced after the muffler is added. Consequently, a successful approach in eliminating a broadband noise hybridized with multiple tones using optimally shaped hybrid Helmholtz mufflers and a simulated annealing method within a constrained space is demonstrated.
机译:在密闭的机房中,噪声控制必须符合职业安全和健康法则,噪声控制至关重要。为了克服对人的听觉有害的高峰值的纯音噪声,已经使用了传统的反应消声器。然而,事实证明,设计反应消声器的传统方法既费时又不充分。为了有效地降低峰值噪声水平,对亥姆霍兹消声器的形状优化的关注已成为最前沿。已经对纯音的亥姆霍兹消声器进行了充分的研究。但是,在有限空间内处理与多种音混合的宽带噪声的多室亥姆霍兹消声器的形状优化一直被忽略。因此,本研究分析了空间受限情况下混合亥姆霍兹消声器的声传输损耗(STL)和最佳优化设计。基于平面波理论,提出了用于评估多音混合亥姆霍兹消声器声学性能的四极系统矩阵。还介绍了使用六种消声器(消声器A〜F)消除机房发出的一/二声调噪声的两种数值情况。为了找到空间受限的消音器的最佳声学性能,采用了使用模拟退火(SA)方法的数值评估。在执行SA操作之前,已使用实验数据检查了数学模型的准确性。在案例1中,消除了与纯音(130 Hz)混合的宽带噪声,表明由单腔亥姆霍兹谐振器和单腔耗散元件组成的消音器C的噪声降低了54.9(dB)。此外,如案例二所示,消声器F,两腔亥姆霍兹谐振器和一腔耗散元件的噪声降低为69.7(dB)。显然,在添加消音器之后,案例I和案例II中纯音的峰值/峰值被有效地降低了。因此,展示了一种成功的方法,该方法可以在有限的空间内使用最佳形状的混合亥姆霍兹消声器和模拟退火方法来消除与多种音频混合的宽带噪声。

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