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Horn effect prediction based on the time domain boundary element method

机译:基于时域边界元方法的喇叭效应预测

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摘要

A time domain boundary element method (TBEM) is applied to predict the horn effect. As the time response calculated by the time domain boundary integral equation contains the resonance components, when transformed to the frequency domain, the result will corrupt at the characteristic frequencies. To overcome this problem, a Burton-Miller-type combined time domain integral equation in half-space is applied. The resonance components are excluded in the time domain calculation, thus the corruptions are avoided in the frequency domain. As a result, the horn effect can be predicted very well at all frequencies. Compared to the frequency domain boundary element method for predicting the horn effect, the TBEM is more efficient due to the lower cost of forming coefficient matrices and solving equations. A numerical simulation is carried out to demonstrate the efficiency of the TBEM, and two experiments are conducted to validate the proposed method in predicting the horn effect. Both numerical and experimental results indicate that the proposed method is reliable and efficient in predicting the horn effect.
机译:应用时域边界元方法(TBEM)来预测喇叭效应。由于由时域边界积分方程计算的时间响应包含谐振分量,因此当转换到频域时,结果将在特征频率处损坏。为了克服这个问题,应用了半空间的Burton-Miller型时域积分方程。在时域计算中排除了谐振分量,因此避免了频域中的损坏。结果,可以在所有频率下很好地预测喇叭效应。与预测喇叭效应的频域边界元方法相比,由于形成系数矩阵和求解方程的成本较低,因此TBEM效率更高。进行了数值模拟,证明了TBEM的有效性,并进行了两个实验以验证所提出的方法在预测喇叭效应方面的有效性。数值和实验结果均表明,该方法在预测喇叭效应方面是可靠而有效的。

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