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Innovations in Noise Mapping in Natural Gas Compressor Stations

机译:天然气压缩机站噪声映射的创新

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Noise is generated at gas turbine-based compressor stations from a number of sources, including turbomachinery (gas turbines and compressors), airflow through inlet ducts and scrubbers, exhaust stacks, aerial coolers, and auxiliary systems. Understanding these noise sources is necessary to ensure that the working conditions on site are safe and that the audible noise at neighbouring properties is acceptable. Each noise source has different frequency content, and the overall sound pressure level (OSPL) at any location in the station yard or inside the compressor building is the result of a superposition of these noise sources. This paper presents results of multiple-point spectral noise measurements at three of TransCanada's compressor stations on the Alberta System. A method is described to determine the overall noise map of the station yard using Delaunay Triangulation and Natural-Neighbour Interpolation techniques. The results are presented in OSPL maps, as well as animated pictures of the sound pressure level (SPL) in frequency domain which will be shown on a video at the conference. The latter will be useful in future work to determine the culprit sources and the respective dominant frequency range that contributes the most to the OSPL
机译:在基于燃气轮机的压缩机站产生的噪声来自多种来源,包括涡轮机械(燃气轮机和压缩机),通过进气道和洗涤器的气流,排气烟囱,空中冷却器和辅助系统。必须了解这些噪声源,以确保现场的工作条件安全,并且可以接受相邻场所的可听噪声。每个噪声源具有不同的频率成分,并且在站场或压缩机建筑物内任何位置的总声压级(OSPL)都是这些噪声源叠加的结果。本文介绍了艾伯塔省系统上三个TransCanada压缩机站的多点频谱噪声测量结果。描述了一种使用Delaunay三角剖分和自然邻域内插技术确定站场总噪声图的方法。结果将显示在OSPL映射中,并在频域中显示声压级(SPL)的动画图片,这些图片将在会议的视频中显示。后者在将来的工作中将有助于确定造成OSPL最多的元凶源和各自的主导频率范围。

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