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Preliminary study on the forecast method of wind velocity distribution above the sea surface in near-shore waters

机译:近岸水域海面风速分布预测方法的初步研究

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From the hydrodynamic feature of the near-shore waters, the actual flow mainly is induced by tidal, wind, salinity, and the run-off should also be included as a component in the estuary waters. Based on the theoretical velocity distribution of the tidal current and the wind- induced current and so on, a method to separate the observed current into the wind induced current by use of the least square method combination of enumeration is advanced. First of all, for verification of its value, this method is applied to the velocity data observed from the North Branch of Yangtze River estuary and laboratory test data. All the results are satisfactory. Then, it is applied to the South Branch of Yangtze River estuary. By use of this approach, not only is the surface velocity of wind induced current obtained, for estimating the wind velocity above the water surface, but also is the friction wind velocity determined. Finally, by combination of the logarithmic distribution of wind velocity, the distribution in low layers over the sea surface is predicted. The research results show that this method is simple in principle, feasible in process, and reasonable in result. So this method is a valid method to analyze and calculate the field data.
机译:从近岸水的流体动力学特征,实际流动主要由潮汐,风,盐度引起,并且耗尽也应作为河口水域中的组成部分。基于潮流和风感电流的理论速度分布等,通过使用枚举的最小二乘法将观察到的电流分离到风感应电流的方法。首先,为了验证其价值,该方法应用于长江河口北枝观察到的速度数据和实验室测试数据。所有结果都是令人满意的。然后,它适用于长江口的南部分支。通过使用这种方法,不仅是所获得的风感应电流的表面速度,用于估计水面上方的风速,而且是确定的摩擦风速。最后,通过组合风速的对数分布,预测海面上的低层的分布。研究结果表明,该方法原则上简单,过程中可行,结果合理。因此,此方法是分析和计算字段数据的有效方法。

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