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渤海潮汐对冰作用的数值模拟 被引量:7
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作者 李海 白珊 +1 位作者 张占海 吴辉碇 《海洋预报》 北大核心 1999年第3期39-47,共9页
为研究渤海潮对海冰运动的作用,将渤海海冰模式与Blumberg的ECOM-si模式通过动力作用联结,构成一种海冰一海洋动力耦合模式。应用上述耦合模式对渤海冬季潮流对冰的动力作用进行模拟研究,得出了渤海海冰运动的一些显... 为研究渤海潮对海冰运动的作用,将渤海海冰模式与Blumberg的ECOM-si模式通过动力作用联结,构成一种海冰一海洋动力耦合模式。应用上述耦合模式对渤海冬季潮流对冰的动力作用进行模拟研究,得出了渤海海冰运动的一些显著特征。 展开更多
关键词 海冰模式 ecom-si模式 渤海 潮汐 冰作用 海冰
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Simulation of Typhoon Muifa using a mesoscale coupled atmosphere–ocean model 被引量:4
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作者 SUN Minghua DUAN Yihong +3 位作者 ZHU Jianrong WU Hui ZHANG Jin HUANG Wei 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第11期123-133,共11页
A mesoscale coupled atmosphere–ocean model has been developed based on the GRAPES(Global and Regional Assimilation and Prediction System) regional typhoon model(GRAPES_TYM) and ECOM-si(estuary, coast and ocean m... A mesoscale coupled atmosphere–ocean model has been developed based on the GRAPES(Global and Regional Assimilation and Prediction System) regional typhoon model(GRAPES_TYM) and ECOM-si(estuary, coast and ocean model(semi-implicit)). Coupling between the typhoon and ocean models was conducted by exchanging wind stress, heat, moisture fluxes, and sea surface temperatures(SSTs) using the coupler OASIS3.0. Numerical prediction experiments were run with and without coupling for the case of Typhoon Muifa in the western North Pacific. To investigate the impact of using more accurate SST information on the simulation of the track and the intensity of Typhoon Muifa, experiments were also conducted using increased SST resolution in the initial condition field of the control test. The results indicate that increasing SST resolution in the initial condition field somewhat improved the intensity forecast, and use of the coupled model improved the intensity forecast significantly, with mean absolute errors in maximum wind speed within 48 and 72 h reduced by 32% and 20%, respectively. Use of the coupled model also resulted in less pronounced over-prediction of the intensity of Typhoon Muifa by the GRAPES_TYM. Moreover, the effects of using the coupled model on the intensity varied throughout the different stages of the development of Muifa owing to changes in the oceanic mixed layer depth. The coupled model had pronounced effects during the later stage of Muifa but had no obvious effects during the earlier stage. The SSTs predicted by the coupled model decreased by about 5–6℃ at most after the typhoon passed, in agreement with satellite data. Furthermore, based on analysis on the sea surface heat flux, wet static energy of the boundary layer, atmospheric temperature, and precipitation forecasted by the coupled model and the control test, the simulation results of this coupled atmosphere–ocean model can be considered to reasonably reflect the primary mechanisms underlying the interactions between tropical cyclones and oceans. 展开更多
关键词 coupled atmosphere-ocean model GRAPES ecom-si TC intensity SST
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