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Internal Tides in the Coastal Waters of NE Arabian Sea: Observations and Simulations

机译:东北阿拉伯海沿海水域的内潮:观测和模拟

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摘要

Time series of temperature and salinity collected from a station in the NE Arabian Sea during March, April, May, October, and November was utilized to explain the behavior of internal tides. Analysis revealed the existence of semi-diurnal internal tides and high frequency (HF) internal waves (IW). It was observed that the amplitudes of HF IWs were determined by the degree of stratification in the thermocline. Corresponding to an increase in the density gradient in thermocline (0.016 kg/m4 in April to 0.14 kg/m4 in October), the temperature fluctuations due to internal tides increased from <0.2℃ to >1.5℃, respectively. Brunt-Vaiisala frequency also showed similar variations (~10 cph to 22 cph). Within the thermocline, semi-diurnal internal tides caused fluctuations of > 10m in the isotherm depths. A linear regression equation was fitted to parameterize the amplitude of HF IWs and its upper frequency limit in terms of thermocline gradient. The IW and one-dimensional models simulated the presence of internal tides and diurnal cycling in the temperature field, respectively. Coupling of these models showed improvement in the simulation of temperature.
机译:利用三月,四月,五月,十月和十一月从东北阿拉伯海的一个站收集的温度和盐度的时间序列来解释内部潮汐的行为。分析表明存在半日内潮和高频(HF)内波(IW)。观察到,HF IW的振幅由温跃层中的分层程度决定。对应于热跃线密度梯度的增加(从4月的0.016 kg / m4到10月的0.14 kg / m4),内部潮汐引起的温度波动分别从<0.2℃增加到> 1.5℃。 Brunt-Vaiisala频率也显示出相似的变化(约10 cph至22 cph)。在温跃层内部,半日内潮汐导致等温线深度的波动大于10m。拟合了线性回归方程,以根据温跃层梯度参数化HF IW的振幅及其频率上限。 IW和一维模型分别模拟了温度场中内部潮汐和昼夜循环的存在。这些模型的耦合显示了温度模拟的改进。

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