首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >IMPACT OF ATMOSPHERIC FRONT PARAMETERS ON FREE AND FORCED OSCILLATIONS OF LEVEL AND CURRENT IN THE SEA OF AZOV
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IMPACT OF ATMOSPHERIC FRONT PARAMETERS ON FREE AND FORCED OSCILLATIONS OF LEVEL AND CURRENT IN THE SEA OF AZOV

机译:大气前参数对亚速海中水平面和电流自由和强迫振荡的影响

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摘要

Level and current oscillations in the basin of the Sea of Azov have been studied by hydrodynamic modeling using the Princeton ocean model (POM). The hypothesis on the role of the resonance mechanism in the occurrence of extremely large amplitudes of storm surge and seiche oscillations depending on the velocity and time of motion of atmospheric fronts of the Sea of Azov has been tested. It is found that at the same wind, pressure perturbations moving over the Sea of Azov induce forced oscillations, and after the perturbations cease, free oscillations with amplitudes that are 14% higher than those obtained at constant atmospheric pressure. It is shown that the motion of the atmospheric front (whose velocity and time are selected under the assumption that waves with maximum amplitudes are generated) plays an important but not decisive role in the formation of the structure of currents and level oscillations in the Sea of Azov.
机译:通过使用普林斯顿海洋模型(POM)进行流体动力学建模,研究了亚速海盆地中的水位和电流振荡。已经检验了关于共振机理在取决于亚速海的大气锋运动的速度和时间的极大幅度的风暴潮和seiche振荡发生中的作用的假设。发现在相同风中,在亚速海上移动的压力扰动会引起强迫振荡,并且在扰动停止后,自由振荡的振幅比在恒定大气压下获得的振幅高14%。结果表明,大气锋的运动(在假定产生最大振幅的波的情况下选择其速度和时间)在海中形成电流和液位振荡时起着重要而非决定性的作用。亚速

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