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Fortnightly Variation in the Bottom Thermal Front and Associated Circulation in a Semienclosed Sea

机译:半封闭海底热锋的每两周变化和相关的环流

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摘要

Summer hydrographic data from 1971 to 2000 demonstrate the presence of bottom cold water (BCW) and a bottom thermal front around the BCW in a semienclosed sea in the Seto Inland Sea of Japan. The horizontal gradient of water temperature across the bottom front was larger in neap tide than in spring tide, which is the opposite the pattern observed in the fortnightly variations in other areas (e.g., the Irish Sea). A numerical model for the Inland Sea reproduced the presence of BCW and a bottom front as well as the same fortnightly variation in the horizontal gradient of water temperature across the bottom front as in observational data. Being the same BCW as those in other areas, the presence of BCW in the Inland Sea is also caused by spatial variation in tidal mixing. The intensification of the bottom front in neap tide in the Inland Sea results from a combination of tidal mixing and horizontal advection of warm water to the BCW. The presence of a bottom residual current in the direction across the bottom front results in the horizontal advection of warm water to the BCW, and its fortnightly variation is responsible for the fortnightly variation of the bottom front in the Inland Sea. The presence of the BCW induces a surface cyclonic circulation in the direction approximately along the bottom front; the intensification and weakening of the bottom front with the spring-neap tidal cycle, combined with the fortnightly variation in the bottom boundary layer thickness, produce a slightly stronger surface cyclonic circulation in neap tide than in spring tide.
机译:1971年至2000年的夏季水文数据表明,在日本濑户内海的半封闭海中存在底部冷水(BCW)和底部热锋。在潮汐潮时,底部潮汐的水温水平梯度大于春季潮汐的潮汐,这与在其他地区(例如爱尔兰海)每两周一次的变化所观察到的模式相反。内陆海域的一个数值模型再现了BCW和底部前缘的存在,以及与观察数据一样,整个底部前缘水温水平梯度每两周变化一次。与其他地区的BCW一样,内河中BCW的存在也是由潮汐混合的空间变化引起的。内陆海域潮汐潮汐中底部前沿的加剧是由于潮汐混合和温水向BCW水平对流共同作用的结果。在横跨底部前缘的方向上存在底部残余电流会导致温水向BCW的水平对流,其每两周的变化是内陆海底前缘每两周变化的原因。 BCW的存在在大约沿着底部前部的方向上引起了表面气旋循环。与春季潮汐周期相比,底部锋面的增强和减弱,加上底部边界层厚度每两周变化,在春季潮汐产生的表面气旋环流比春季潮汐略强。

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