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Water level oscillations in Monterey Bay and Harbor

机译:蒙特利湾和港口的水位波动

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Seiches are normal modes of water bodies responding to geophysical forcings with potential to significantly impact ecology and maritime operations. Analysis of high-frequency (1 Hz) water level data in Monterey, California, identifies harbor modes between 10 and 120 s that are attributed to specific geographic features. It is found that modal amplitude modulation arises from cross-modal interaction and that offshore wave energy is a primary driver of these modes. Synchronous coupling between modes is observed to significantly impact dynamic water levels. At lower frequencies with periods between 15 and 60 min, modes are independent of offshore wave energy, yet are continuously present. This is unexpected since seiches normally dissipate after cessation of the driving force, indicating an unknown forcing. Spectral and kinematic estimates of these low-frequency oscillations support the idea that a persistent anticyclonic mesoscale gyre adjacent to the bay is a potential mode driver, while discounting other sources.
机译:Seiches是水体对地球物理强迫做出反应的正常模式,有可能极大地影响生态和海洋作业。通过对加利福尼亚州蒙特雷的高频(1 Hz)水位数据进行分析,可以确定10到120 s之间的港口模式,这些模式归因于特定的地理特征。发现模态振幅调制源于交叉模态相互作用,并且海上波浪能是这些模态的主要驱动力。观察到模式之间的同步耦合会显着影响动态水位。在15至60分钟之间的较低频率下,模式与海上波浪能无关,但会持续存在。这是出乎意料的,因为在驱动力停止后,胶浆通常会消散,这表明力未知。这些低频振荡的频谱和运动学估计支持以下观点:与海湾相邻的持续的反气旋中尺度旋涡是潜在的模式驱动器,同时不考虑其他来源。

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