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Numerical simulation of tidal current energy in Yangtze Estuary-Hangzhou Bay, China

机译:长江口-杭州湾潮流能量的数值模拟

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Tidal current power generation system extracts energy by transferring the kinetic energy of tidal movement to the motion of power turbines. The long coastline of China contains abundant tidal energy, but not all coastal area worth exploiting. It is generally considered that a mean spring peak tidal current of at least 2 m/s is required for tidal current power exploitation. Thus we choose to evaluate the tidal kinetic energy of East China Sea coastal area where 95 waterways contained, accounting for 78.6% of China's tidal kinetic energy. Considering the interaction between the Yangtze Estuary and Hangzhou Bay, a high resolution model with unstructured 3D grid system FVCOM (finite volume coastal ocean model) has been applied to simulate tidal motion in the Yangtze Estuary-Hangzhou Bay. The numerical results of the refined model has been validated with: (a) measured tidal currents data after harmonic analysis; (b) measured tide level hydrograph and velocity which were observed by China's coastal physical oceanography and marine meteorological special investigation on the East China Sea during August, 2014. It is also noticed that the area where power density larger than 10 kW/m are mainly distributed over North Port of Yangtze Estuary and north of Hangzhou Bay, and the maximal value of the possible maximum velocity of the tidal current reaches 3.0–3.5 m/s at Hangzhou Bay.
机译:潮汐电流发电系统通过将潮汐运动的动能传递到动力涡轮机的运动来提取能量。中国的长海岸线包含丰富的潮汐能,但并非所有沿海地区都值得开采。通常认为潮流电流剥削需要至少2米/ s的平均弹簧峰潮流。因此,我们选择评估东海沿海地区的潮动能能源,其中95家水道,占中国潮汐动能的78.6%。考虑到长江河口与杭州湾之间的互动,具有非结构化3D电网系统FVCOM(有限体积沿海海洋模型)的高分辨率模型,以模拟长江河口杭州湾的潮汐运动。精细模型的数值结果已被验证:(a)谐波分析后的潮流数据测量; (b)在2014年8月期间,中国沿海地震和海洋气象学和海洋气象特殊调查观察到的潮水水平的水平速度分布在杭州湾北口的北口北口,杭州湾的最大速度最大速度的最大值达到3.0-3.5米/秒。

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