台风罗莎在台湾海峡引起的交通逆转

Yu-Hsien Lin, M. Fang, H. Hwung
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引用次数: 10

摘要

利用COMCOT-S综合水动力模型对2007年台风罗莎期间台湾海峡的输运反转进行了研究。数值模式最初是基于COMCOT,在COMCOT- s中嵌入了一个带大气子模式的参数风模式,用于模拟台风诱导流。利用2007年10月5日至8日(GMT+8)的野外观测和数值模拟分析了台风罗莎影响下台湾海峡的输送特征。结果表明,在气流逆转后,台风诱导的气流对北风的停止并没有完全响应,说明其他动力对台湾海峡气流方向的影响。发现台风引起的风切变应力和水位梯度是南向输送事件的直接驱动力,而在南向输送高峰后,大气压力梯度起主导作用。通过与6次数值实验的比较,得到的网格分辨率与麦寮港附近THL1站的实测数据吻合较好。通过数值实验的输运模拟,发现科氏力在输运反转中也起主导作用,特别是在台湾海峡北部。此外,科里奥利力对南向运输事件的负贡献在澎湖海峡比在台湾浅滩更为相关。最后验证了如果没有科里奥利力对澎湖海峡北移的贡献,长云隆起附近的反气旋涡就不会产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transport Reversal Due to Typhoon Krosa in the Taiwan Strait
A comprehensive hydrodynamic model, COMCOT-S, has been aimed at transport reversal in the Taiwan Strait during the period of Typhoon KROSA in 2007. The numerical model is originally based on COMCOT, and a parametric wind model with atmospheric sub-model is imbedded in COMCOT-S for simulating the typhoon-induced currents. The transport characteristics through the Taiwan Strait under the influence of Typhoon KROSA were analyzed using both field observations and numerical simulations during the period from 05 October to 08 October 2007 (GMT+8). The re- sults show that typhoon-induced currents did not fully response to the cease of the northward winds after the flow rever- sal, representing the influence of other dynamical forces on the flow orientation in the Taiwan Strait. Typhoon-induced wind shear stress and the water level gradient are found to be the direct driving forces of the southward transport events, whereas the atmospheric pressure gradient is dominant after the southward transport peak. By comparing with six numeri- cal experiments, the result of finer grid resolution is in good agreement with the observed current data at THL1 station near Mailiao Harbor. According to the transport simulation of numerical experiments, the Coriolis force is found to play a dominant role in the transport reversal as well, especially in the north Taiwan Strait. Besides, it is more relevant in the Penghu Channel than in the Taiwan Banks that the Coriolis force makes a negative contribution to the southward transport events. Finally, it's verified that the generation of an anticyclonic eddy near the Changyun Rise would not be reached without the contribution of the Coriolis force to the northward transport in the Penghu Channel.
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