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The Influence of the Horn Effect in Tyre/Road Noise

机译:喇叭效应对轮胎/道路噪声的影响

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The horn effect is known as an important amplification mechanism in tyre/road noise. The name is referring to the geometry between tyre and road surface which resembles an exponential horn. The horn effect is a common subject for both experimental and numerical research. Contrary to previous studies which considered point sources, this paper focusses on the horn effect by simulated tyre vibrations. The amplification of acoustic pressure, however, depends largely on the location of the observer. The sound power can be used as a measure for the horn effect which is independent on the point of observation. In this paper, the sound radiation problem is solved using the boundary element method (BEM). First, a case study considering equivalent point sources is used to validate the accuracy of the boundary element model and solver using experimental results. Next, the vibrations of tyres rolling on textured road surfaces are investigated numerically. The computed tyre vibrations are used to study the horn effect using different tyre designs. The amplification by horn effect is determined by the combined tyre/road geometry and the distribution of the noise. The current method may be used to systematically study the influence of the horn effect, for example, during tyre development.
机译:号角效应被称为轮胎/道路噪声中的重要放大机制。该名称是指轮胎和路面之间的几何形状,类似于指数喇叭。喇叭效应是实验和数值研究的共同课题。与以前考虑点源的研究相反,本文着重于通过模拟轮胎振动产生的喇叭效应。然而,声压的放大很大程度上取决于观察者的位置。声功率可以用作衡量号角效果的一种方法,它独立于观察点。在本文中,使用边界元方法(BEM)解决了声音辐射问题。首先,通过考虑等效点源的案例研究,利用实验结果验证边界元模型和求解器的准确性。接下来,对在凹凸路面上滚动的轮胎的振动进行数值研究。计算出的轮胎振动用于研究使用不同轮胎设计的喇叭效应。喇叭效应的放大取决于轮胎/道路的几何形状和噪声的分布。当前的方法可以用于系统地研究喇叭效应的影响,例如在轮胎开发过程中。

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