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首页> 外文期刊>Noise Control Engineering Journal >Underwater radiated noise of the NOAA ship Oscar Dyson
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Underwater radiated noise of the NOAA ship Oscar Dyson

机译:NOAA船Oscar Dyson的水下辐射噪声

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The NOAA Ship OSCAR DYSON is the First-in-Class fisheries research vessel designed and built for the National Oceanic and Atmospheric Administration (NOAA) for fish stock assessment. One of its most important contractual requirements was to achieve an underwater noise limit established by the International Council for the Exploration of the Seas (ICES). The underwater noise limit has been specified by ICES over too large a frequency range and too small a resolution to allow for measurements with commercial grade test equipment. Modifications to the limit were made by NOAA which allowed the authors to develop a simple, deployable underwater measurement system. This system was then used to measure underwater noise from the OSCAR DYSON during sea trials in the Gulf of Mexico. The system consisted of a hydrophone array, signal conditioning and data acquisition hardware. The distance between the hydrophone array and the vessel must also be measured during the survey with the vessel in the acoustic far-field. Results from the far-field noise measurements were compiled and then compared to the ICES specification requirements. Self-noise from permanently mounted hydrophones in the hull were also measured during the survey. Finally, a comparison between the commercial system used by the authors and subsequent measurements performed by the U.S. Navy at their acoustic underwater test facility is made. These show good agreement at all but the lowest frequencies. (C) 2006 Institute of Noise Control Engineerig.
机译:NOAA OSCAR DYSON船是一流的渔业研究船,是为国家海洋与大气管理局(NOAA)设计和建造的,用于鱼类种群评估。它最重要的合同要求之一是达到国际海洋探索理事会(ICES)制定的水下噪声限制。 ICES已规定了水下噪声极限,该极限在太大的频率范围和太小的分辨率下无法使用商业级测试设备进行测量。 NOAA对极限进行了修改,使作者能够开发一个简单的,可部署的水下测量系统。然后,在墨西哥湾进行海试时,使用该系统测量来自OSCAR DYSON的水下噪声。该系统由水听器阵列,信号调节和数据采集硬件组成。水听器阵列与容器之间的距离也必须在测量过程中在容器处于声远场的情况下进行测量。汇总了远场噪声测量的结果,然后将其与ICES规范要求进行了比较。在调查期间还测量了船体中永久安装的水听器的自噪声。最后,在作者使用的商业系统与美国海军在水下声学测试设备上进行的后续测量之间进行了比较。除了最低频率外,这些都显示出良好的一致性。 (C)2006噪声控制工程研究所。

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