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The Role of Top Surface to Performance of Reactive T-Shape Noise Barriers

机译:顶面对反应性T形噪声屏障性能的作用

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T-shape profile barriers are one of the most successful barriers among many different profiles. It has been shown that using welled diffusers on the top of T-shaped barriers makes a reactive barrier that shows better performance than that of any other used profile barriers compared with their equivalent absorbent barrier. The contribution of the top surface of reactive T-profile barriers to their efficiency in the shadow zone is discussed in this paper. The new multiple impedance discontinuity (NMID) method was used on a few multi-welled surfaces and the application of the findings on the diffuser T-profile barrier along with a descriptive theory of the welled surface effect was presented. An acceptable agreement between the result of the NMID model and BEM method for a few welled surfaces were found. The area-averaged impedance model was also used in the NMID model and it was found that this model can be a good performance indicator for a multi-welled surface. In order to explain the contribution of the top surface of a T-profile barrier, it is adequate to use the NMID model on a mixed ground equivalent to the top surface of the barrier where the source and receiver are located at near the ground where the separation of source and receiver is identical with the overall span of the cap. The effect of average admittance of top surface is dominant and the effect of the impedance discontinuity is overshadowed by this effect.
机译:T形轮廓障碍是许多不同轮廓中最成功的障碍之一。业已表明,在T形阻隔层的顶部使用井状扩散器可制成反应性阻隔层,与同等的吸收性阻隔层相比,它的性能优于任何其他使用过的轮廓阻隔层。本文讨论了反应性T形势垒的顶表面对它们在阴影区的效率的贡献。在多个多孔表面上使用了新的多阻抗不连续性(NMID)方法,并介绍了扩散T型轮廓势垒的发现以及对表面现象的描述理论的应用。 NMID模型的结果和BEM方法对于一些孔表面的结果是可以接受的。面积平均阻抗模型也用于NMID模型,并且发现该模型可以作为多孔表面的良好性能指标。为了解释T形轮廓障碍物顶表面的贡献,在与源和接收器位于障碍物顶部附近的障碍物顶表面等效的混合地面上使用NMID模型就足够了源和接收器之间的距离与盖子的总跨度相同。顶表面的平均导纳的影响是主要的,并且阻抗不连续的影响被该影响所掩盖。

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