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Tidal energy budget in the Zhujiang (Pearl River) Estuary

机译:珠江口的潮汐能收支

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摘要

Tidal energy budget in the Zhujiang (Pearl River) Estuary (ZE) is evaluated by employing high-resolution baroclinic regional ocean modeling system (ROMS). The results obtained via applying the least square method on the model elevations are compared against the tidal harmonic constants at 18 tide stations along the ZE and its adjacent coast. The mean absolute errors between the simulation and the observation of M2, S2, K1 and O1 are 4.6, 2.8, 3.2 and 2.8 cm in amplitudes and 9.8°, 15.0°, 4.6° and 4.6° in phase-lags, respectively. The comparisons between the simulated and observed sea level heights at 11 tide gauge stations also suggest good model performance. The total tidal energy flux incoming the ZE is estimated to be 343.49 MW in the dry season and larger than 336.18 MW in the wet season, which should due to higher mean sea level height and heavier density in the dry season. M2, K1, S2, O1 and N2, the top five barotropic tidal energy flux contributors for the ZE, import 242.23 (236.79), 52.97 (52.08), 24.49 (23.96), 16.22 (15.91) and 7.10 (6.97) MW energy flux into the ZE in dry (wet) season, successively and respectively. The enhanced turbulent mixing induced by eddies around isolated islands and sharp headlands dominated by bottom friction, interaction between tidal currents and sill topography or constricted narrow waterways together account for the five energy dissipation hotspots, which add up to about 38% of the total energy dissipation inside the ZE.
机译:珠江口(ZE)的潮汐能收支是通过采用高分辨率斜压区域海洋模拟系统(ROMS)来评估的。将在模型高程上应用最小二乘法得到的结果与沿ZE及其相邻海岸的18个潮汐站的潮汐谐波常数进行了比较。模拟和观察到的M2,S2,K1和O1之间的平均绝对误差幅度分别为4.6、2.8、3.2和2.8 cm,相位滞后分别为9.8°,15.0°,4.6°和4.6°。在11个潮位站的模拟海平面高度与观测海平面高度之间的比较也表明了良好的模型性能。估计进入ZE的总潮汐能通量在干旱季节为343.49 MW,在潮湿季节大于336.18 MW,这应归因于较高的平均海平面高度和干旱季节的较重密度。 M2,K1,S2,O1和N2是ZE的前五种正压潮汐能通量贡献者,分别进口了242.23(236.79),52.97(52.08),24.49(23.96),16.22(15.91)和7.10(6.97)MW能量通量分别在干(湿)季进入ZE。孤岛周围的涡流和陡峭的岬角(由底部摩擦,潮汐流和坎ill地形或狭窄的狭窄水道相互作用)主导的湍流混合增强,共同构成了五个能量耗散热点,这些能量耗散热点约占总能量耗散的38%在ZE里面。

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  • 来源
    《海洋学报(英文版)》 |2016年第5期|54-65|共12页
  • 作者单位

    Physical 0ceanography Laboratory, 0cean University of China, Qingdao 266100, China;

    College of Information Science and Engineering, 0cean University of China, Qingdao 266100, China;

    Physical 0ceanography Laboratory, 0cean University of China, Qingdao 266100, China;

    Physical 0ceanography Laboratory, 0cean University of China, Qingdao 266100, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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