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Structure-Borne Noise Contributions on Interior Noise in Terms of Car Design and Vehicle Type

机译:在汽车设计和车辆类型方面的内部噪音结构传播噪声

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The aim of the investigation at hand was to elaborate a systemized view on the importance of structure-borne bogie noise on the interior noise by a comparative analysis of six different trains of different vehicle classes, construction methods and bogie designs. In doing so, it is intended to deepen the understanding of noise transmission into the passenger compartments of railway vehicles. For that purpose, the data sets of the different vehicles were analyzed similarly with the OTPA technique. This comparative analysis at typical train speeds clearly shows that there are agreements within the vehicle class and differences between the vehicle classes. The higher the maximum vehicle speed, the higher is the importance of structure-borne noise. This is caused firstly by the different bogie designs and second by the fact that the airborne transmission loss is improved for trains with a higher maximum speed, but the structure-borne transmission loss not to the same extent.
机译:掌握调查的目的是通过对不同车辆课程,施工方法和转向架设计的六种不同火车的比较分析来详细阐述结构 - 传统的转向架噪声对内部噪声的重要性。 在这样做时,旨在加深对铁路车辆乘客舱的噪声传输的理解。 为此目的,与OTPA技术类似地分析不同车辆的数据集。 典型列车速度的这种比较分析清楚地表明,车辆课程内有达成协议和车辆课程之间的差异。 车辆速度越高,结构噪声的重要性越高。 这是由不同的转向架设计引起的,并且第二种事实是,由于最大速度较高的火车的火际传输损耗得到了改善的事实,但是结构 - 传输丢失不相同程度。

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