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Amplification of semidiurnal internal tide observed in the outer part of Tokyo Bay

机译:在东京湾外部观测到半日内潮的放大

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Monitoring using a thermistor array and an acoustic Doppler current profiler was carried out in the outer part of Tokyo Bay from May 20 to November 30, 2006. Current fluctuations with tidal periods were amplified during the maximum temperature period in early September. The strong current interfered with fishing operations using set nets. Although the current fluctuation was speculated to be baroclinic motion from a phase relationship among fluctuations of temperature, current and sea level, empirical orthogonal function analysis showed the dominance of a barotropic structure. Such a discrepancy in the current structure was explained by an internal tide propagating along a deep canyon in the outer part of Tokyo Bay. Furthermore, amplification of the semidiurnal internal tide and the warming of the temperature field were found to be induced by the intrusion of Kuroshio warm water. The amplification mechanism was examined using a two-dimensional model with idealized topography. It was concluded that the large amplitude of the semidiurnal internal tide is resonantly generated in the deep canyon in the outer Tokyo Bay when stratification becomes strong and the period of the internal seiche approaches the semidiurnal period.
机译:2006年5月20日至11月30日,在东京湾外围使用热敏电阻阵列和声学多普勒电流剖面仪进行了监测。在9月初的最高温度期间,随着潮汐期的电流波动被放大。强电流干扰了使用固定网的捕鱼作业。尽管从温度,水流和海平面的波动之间的相位关系推测出当前的波动是斜压运动,但是经验正交函数分析显示出正压结构的优势。当前结构的这种差异是由沿东京湾外部深峡谷传播的内部潮汐解释的。另外,发现黑潮温水的侵入引起半日内潮的扩大和温度场的变暖。使用具有理想地形的二维模型检查了放大机制。得出的结论是,当分层增强并且内部成藏期接近半日周期时,东京湾外深峡谷中半日潮的大振幅共振产生。

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