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首页> 外文期刊>Moscow University Physics Bulletin >The Peculiarities of the Effects of Underwater Currents on Low-Frequency Hydroacoustic Stationary Vertically Distributed Receiving Systems
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The Peculiarities of the Effects of Underwater Currents on Low-Frequency Hydroacoustic Stationary Vertically Distributed Receiving Systems

机译:水下水流对低频水声固定垂直分布接收系统影响的特殊性

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Features of the behavior of long vertically distributed receiving systems (VDRSs) for use in the low-frequency tomography of the ocean are considered. In the most common design variant, VDRSs are structures that consist of a cable rope of up to several hundreds of meters in length with receiving modules placed coaxially (hydrophones) or axis-perpendicularly (accelerometers) on it, a buoy, and an anchor, which support the predetermined spatial position of the system. The results of the experiments carried out using VDRSs of 32 and 128 m in the White Sea are discussed. Underwater-current forces on a VDRS result in vibrations on system elements, especially on the cable–rope, which are transmitted to hydrophones and are responsible for the formation of a pseudo sound signal at frequencies below 10–12 Hz that, under certain conditions, can considerably exceed the background noise level of the water area. These facts may considerably reduce the efficiency of a VDRS and limit the frequency range of measurements from the bottom. The similarity of the results obtained by different experiments suggests that there is a general mechanism for the occurrence of vibrations and pseudo sound. The definition of such a mechanism can point the way to eliminating these undesirable effects and extending the frequency range of a VDRS into the infrasonic range.
机译:考虑了用于海洋低频层析成像的长垂直分布接收系统(VDRS)的行为特征。在最常见的设计变体中,VDRS是由长达数百米的缆绳,同轴上(水听器)或垂直于轴(加速度计)的接收模块,浮标和锚固件组成的结构,支持系统的预定空间位置。讨论了在白海中使用32和128 m的VDRS进行的实验结果。 VDRS上的水下电流会导致系统元件(特别是电缆绳)上的振动,该振动会传输到水听器,并导致在低于10-12 Hz的频率下形成伪声音信号,在某些情况下,可能会大大超过水域的背景噪音水平。这些事实可能会大大降低VDRS的效率,并从底部限制测量的频率范围。通过不同实验获得的结果的相似性表明,存在振动和伪声音发生的一般机制。这种机制的定义可以指出消除这些不良影响并将VDRS的频率范围扩展到次声范围的途径。

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