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A numerical assessment of optimal equipment allocation and acoustical barrier shape in a multi-noise plant by using the simulated annealing method

机译:使用模拟退火方法的多噪声工厂最佳设备配置和声屏障形状的数值评估

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摘要

In order to overcome the noise impact emitted from a multi-noise plant, a sound barrier, a popular noise control strategy, has been used in the industrial field for a long time. Yet, the traditional method in the design of a sound barrier is time-consuming and expensive. To economically improve acoustical performance, an interest in shape optimization of a sound barrier in conjunction with an optimal equipment allocation around the plant's boundary is rising.rnIn this paper, the novel technique of simulated annealing (SA) in conjunction with the theoretical sound propagation model and the method of minimized variation square is applied in the following numerical optimizations. Before a sound barrier is optimized, the sound propagation from one single noise is tested and compared with the experimental data for the purpose of accuracy within the mathematical model. Moreover, four kinds of sound barrier systems in conjunction with equipment allocation have been fully discussed and optimally shaped by the SA. The results reveal that the both sound barrier and equipment can be properly shaped and allocated. Consequently, this paper may provide an efficient and rapid methodology in the noise minimization of a multi-equipment plant.
机译:为了克服多噪声工厂发出的噪声影响,声屏障,一种流行的噪声控制策略已在工业领域中使用了很长时间。然而,设计声屏障的传统方法既费时又昂贵。为了经济地改善声学性能,人们越来越希望对隔音屏障的形状进行优化,并在工厂边界附近进行最佳设备分配。rn本文采用模拟退火(SA)的新技术以及理论上的声音传播模型在下面的数值优化中采用最小方差平方的方法。在优化声障之前,出于数学模型内准确性的目的,对来自单个噪声的声音传播进行测试,并将其与实验数据进行比较。此外,SA充分讨论了四种与设备分配相结合的隔音系统,并对其进行了优化设计。结果表明,隔音屏障和设备都可以适当地成形和分配。因此,本文可以为多设备工厂的噪声最小化提供一种有效而快速的方法。

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