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Evolution of wind-driven flows in the Yellow Sea during winter

机译:冬季黄海风流的演变

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摘要

To examine the evolution of the wind-driven flows in the Yellow Sea (YS) during winter, ocean circulation was simulated using a three-dimensional ocean model with realistic topography and atmospheric forcing. The simulated sea surface temperature, ocean currents, and path of the Yellow Sea Warm Current (YSWC) agreed with observations. Southward currents along the Korean coast and the Chinese coast in winter were also effectively identified. Spectra of the daily mean winds and the YSWC velocities in the subsurface layer had dominant peaks at 12 and 20 day periods. Time-lagged correlation analysis suggested that the downwind flow in the surface layer reacts concurrently to the northwesterly wind in winter whereas the subsurface layer responds with a delay. One day after the wind burst, an upwind current in the subsurface layer appeared in the center of the trough, whereas the downwind flow in the surface layer decreased significantly. Two days later, the upwind flow in the subsurface layer shifted to the west of the trough while the downwind flow along the Korean coast strengthened. These flow responses to the wind variations resulted in a clockwise circulation in the YS during winter.
机译:为了检查冬季黄海(YS)中风流的演变,使用具有逼真的地形和大气强迫的三维海洋模型模拟了海洋环流。模拟的海面温度,洋流和黄海暖流(YSWC)的路径与观测值一致。还可以有效地识别出冬季朝鲜沿岸和中国沿岸的南流。地下平均日风和YSWC速度的频谱在12天和20天时段具有主导峰。时滞相关分析表明,冬季表层的顺风与西北风同时发生反应,而地下层的响应则有所延迟。阵风爆发后的一天,在海槽的中央出现了地下层的逆风流,而在表层的顺风则明显减少。两天后,地下层的上风向移至波谷西侧,而沿韩国海岸的下风向则增强。这些对风变化的流量响应导致了冬季YS的顺时针循环。

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