首页> 外文期刊>The Journal of the Acoustical Society of America >The Kauai Near-Source Test (KNST): Modeling and measurements of downslope propagation near the North Pacific Acoustic Laboratory (NPAL) Kauai source
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The Kauai Near-Source Test (KNST): Modeling and measurements of downslope propagation near the North Pacific Acoustic Laboratory (NPAL) Kauai source

机译:考艾岛近源测试(KNST):北太平洋声学实验室(NPAL)考艾岛源附近下坡传播的建模和测量

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In April 2002, a series of recordings were taken near the North Pacific Acoustic Laboratory (NPAL) Kauai source. This source transmits broadband low-frequency signals to receivers in various locations across the Pacific. Travel-time calculations based upon the nonbottom interacting PE or ray-trace modeling for the Kauai source lagged the actual first arrival by 1 second or so, a disturbing discrepancy that needed answering. The Kauai Near-Source Test (KNST) was designed to take measurements near the Kauai source to examine the effect of the local bathymetry on the signal transmitted into the ocean. Six receptions, using a 100 in VLA, at ranges from 0.2 to 52 kin were taken. Parabolic Equation (PE) simulations of the channel impulse response for the measurement ranges are in good agreement with the observations. PE simulations using an exposed basalt seafloor match the data much better than those with a silty-sand cover. A primary result of this test was the indication that there may be significant energy in the first bottom bounce, comparable to the direct-path (purely refracted) ray. This implies that the seafloor near the source influences the arrival times and patterns of the field at long distances, and should be taken into account. (c) 2005 Acoustical Society of America.
机译:2002年4月,在北太平洋声学实验室(NPAL)考艾岛附近拍摄了一系列录音。该源将宽带低频信号传输到太平洋各地的接收器。基于针对考艾岛源的非底部交互作用PE或光线跟踪模型进行的旅行时间计算将实际首次到达时间延迟了1秒钟左右,这是一个令人困扰的差异,需要回答。考艾岛近源测试(KNST)旨在在考艾岛源附近进行测量,以检查局部测深法对传输到海洋的信号的影响。使用0.2到52亲属的VLA 100进行了六次接收。在测量范围内,信道脉冲响应的抛物线方程(PE)模拟与观测值非常吻合。使用裸露的玄武岩海底进行的PE模拟与采用粉沙覆盖层的模拟相比,数据匹配要好得多。该测试的主要结果是表明,在第一波底部反弹中可能有大量能量,可与直接路径(纯折射)射线相比。这意味着靠近源头的海底会影响长距离到达场的时间和场型,因此应予以考虑。 (c)2005年美国声学学会。

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