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Evolution of pantograph noise directivity at increasing speeds

机译:受电弓声速方向性的演变

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In February-March 2018 a set of tests were undertaken to confirm the acoustic performance of high speed rolling stock fleets. These tests were carried out on behalf of HS2 on the ADIF high speed network near the village of Las Inviernas (Guadalajara, Spain). The test site was chosen so that three conditions would be fulfilled. First, maximum speed up to 350 km/h ought to be reachable during tests in dedicated mode. Second, a complete catenary arch ought to be present in the site so that it could be used as a support for installation of a number of microphones. Third, a flat and almost levelled terrain with almost semi-anechoic characteristics should be found in the surroundings of the track. Among other tests, the evolution of pantograph noise emission with respect to speed was studied, for the same unit of a dedicated Siemens Velaro E running at different speeds from 250 km/h to 350 km/h. This paper shows the evolution observed in the directivity emission pattern as observed by the microphones installed in the catenary portal. A theoretical discussion about the physical aero-acoustic phenomena justifying the observed evolution is presented together with the experimental results.
机译:2018年2月至3月,进行了一系列测试以确认高速机车车辆的声学性能。这些测试是代表HS2在Las Inviernas村(西班牙瓜达拉哈拉,西班牙)附近的ADIF高速网络上进行的。选择测试地点是为了满足三个条件。首先,在专用模式下进行测试时,最高速度应达到350 km / h。第二,现场应有完整的悬链拱,以便用作安装多个麦克风的支撑。第三,应在赛道周围发现平坦且平坦的地形,几乎具有半消声特性。在其他测试中,对于专用的Siemens Velaro E的同一单元,以250 km / h至350 km / h的不同速度运行,研究了受电弓噪声发射随速度的变化情况。本文显示了通过安装在悬链门户中的麦克风观察到的方向性发射模式中的演变。提出了关于物理空气声学现象的理论讨论,证明了所观察到的演化是合理的,并给出了实验结果。

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