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Ambient seismic, hydroacoustic, and flexural gravity wave noise on a tabular iceberg

机译:板状冰山的周围地震,水声和弯曲重力波噪声

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Cross correlation of ambient seismic noise between four seismographs on tabular iceberg C16, Ross Sea, Antarctica, reveals both the source and the propagation characteristics of signals associated with icebergs. We find that noise correlation functions computed from station data are asymmetric about zero time lag, and this indicates that noise observed on the iceberg originates primarily from a compact, localized source associated with iceberg collisions between C16 and a neighboring iceberg, B15A. We additionally find two, and possibly more, distinct phases of noise propagation. We believe that flexural gravity wave propagation dominates the low-frequency noise (>10 s period) and that hydroacoustic wave propagation in the water column between the ice and seabed appears to dominate high-frequency noise (>10 Hz). Faster seismic propagation dominates the intermediate band (2-6 Hz); however, we do not have sufficient data to characterize the wave mechanisms more precisely, e.g., by identifying distinct longitudinal and shear body waves and/or surface waves. Secular changes in the amplitude and timing of ambient noise correlations, e.g., a diurnal cycle and an apparent shift in the noise correlation of fast seismic modes between two periods of the deployment, allow us to speculate that ambient noise correlation analysis may be helpful in understanding the sources and environmental controls on iceberg-generated ocean noise as well as geometric properties (such as water column thickness) of subglacial lakes.
机译:在南极罗斯海的板式冰山C16上的四个地震仪之间,环境地震噪声之间的互相关关系揭示了与冰山相关的信号的来源和传播特性。我们发现,根据台站数据计算出的噪声相关函数在零时滞之间是不对称的,这表明在冰山上观测到的噪声主要源自与C16和相邻冰山B15A之间的冰山碰撞相关的紧凑的局部来源。我们还发现了噪声传播的两个(可能还有更多)不同的阶段。我们认为,弯曲重力波传播占主导地位的低频噪声(> 10 s周期),而水声波在冰和海床之间的水柱中的传播似乎占主导地位的高频噪声(> 10 Hz)。更快的地震传播主导了中频带(2-6 Hz);但是,我们没有足够的数据来更精确地描述波动机制,例如,通过识别不同的纵向和剪切体波和/或表面波。环境噪声相关性的幅度和时间的长期变化,例如昼夜周期和快速地震模式的噪声相关性在部署的两个周期之间的明显变化,使我们推测环境噪声相关性分析可能有助于理解冰山产生的海洋噪声以及冰河下湖泊的几何特性(例如水柱厚度)的来源和环境控制。

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