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Approximate solutions for acoustic radiation problems: A critical appraisal of the method comparative sources

机译:声辐射问题的近似解决方案:对方法比较源的严格评估

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Radiation and scattering from vibrating bodies can be expressed by a source system that is placed inside the radiator and whose source strengths are determined appropriately. The Method of Comparative Sources (MCS) provides an estimate of these source strengths from the nearfield data. In the present article, the MCS is reviewed by applying it to cylinders with elliptical cross-section for which exact solutions of the sound field are available. Solutions for different, more and less efficiently radiating velocity distributions are compared to results obtained with the MCS, using Various source systems and different weighting functions. It is demonstrated that, contrary to current assumptions, the error in the surface velocity approximation is generally not proportional to the error the radiated sound power. Furthermore, the method provides an adequate prediction of the radiated sound power only for efficient radiators. Inefficient radiators are not handled well with the MCS. Finally it is shown, that the incorporation of certain weighting functions will further improve the MCS. [References: 51]
机译:振动体的辐射和散射可以通过放置在散热器内部并适当确定其源强度的源系统来表示。比较源方法(MCS)可根据近场数据估算这些源的强度。在本文中,通过将MCS应用于具有椭圆形横截面的圆柱体,可以对其进行精确的声场求解,从而对MCS进行了回顾。使用各种源系统和不同的加权函数,将不同的,效率更高或更低效率的辐射速度分布的解决方案与通过MCS获得的结果进行比较。已经证明,与当前的假设相反,表面速度近似中的误差通常与辐射声功率的误差不成比例。此外,该方法仅对于有效的辐射器提供了辐射声功率的充分预测。 MCS无法很好地处理低效的散热器。最后表明,某些加权函数的合并将进一步改善MCS。 [参考:51]

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