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Intensification of Ocean Fronts by Down-Front Winds

机译:下风对海洋前沿的强化

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摘要

Many ocean fronts experience strong local atmospheric forcing by down-front winds, that is, winds blowing in the direction of the frontal jet. An analytic theory and nonhydrostatic numerical simulations are used to demonstrate the mechanism by which down-front winds lead to frontogenesis. When a wind blows down a front, cross-front advection of density by Ekman flow results in a destabilizing wind-driven buoyancy flux (WDBF) equal to the product of the Ekman transport with the surface lateral buoyancy gradient. Destabilization of the water column results in convection that is localized to the front and that has a buoyancy flux that is scaled by the WDBF. Mixing of buoyancy by convection, and Ekman pumping/ suction resulting from the cross-front contrast in vertical vorticity of the frontal jet, drive frontogenetic ageostrophic secondary circulations (ASCs). For mixed layers with negative potential vorticity, the most frontogenetic ASCs select a preferred cross-front width and do not translate with the Ekman transport, but instead remain stationary in space. Frontal intensification occurs within several inertial periods and is faster the stronger the wind stress. Vertical circulation is characterized by subduction on the dense side of the front and upwelling along the frontal interface and scales with the Ekman pumping and convective mixing of buoyancy. Cross-front sections of density, potential vorticity, and velocity at the subpolar front of the Japan/East Sea suggest that frontogenesis by down-front winds was active during cold-air outbreaks and could result in strong vertical circulation.
机译:许多海滨都受到前风的作用,即沿前喷气流方向吹来的强风对当地大气的强迫作用。运用解析理论和非静水数值模拟来说明下风向导致前生的机理。当风从正面吹下来时,埃克曼流产生的横向交叉对流平流会导致不稳定的风力驱动浮力通量(WDBF)等于埃克曼输运与表面横向浮力梯度的乘积。水柱不稳定会导致对流,该对流位于前部,并且浮力通量由WDBF缩放。对流产生的浮力和额叶喷流垂直涡旋的交叉锋面反差引起的埃克曼抽水/吸力的混合,推动了额生的成年女性次生循环(ASC)。对于具有负潜在涡度的混合层,大多数前生ASC选择首选的交叉前宽度,并且不随Ekman传输而平移,而是在空间中保持静止。正面强化发生在几个惯性周期内,风应力越大,速度越快。垂直循环的特征是在前部密实的一侧俯冲并沿着前部界面向上涌流,并随埃克曼泵送和对流混合浮力而扩展。在日本/东海副极锋的横剖面,密度,潜在涡度和速度表明,在冷空气爆发期间,副风的前生活跃,并且可能导致强烈的垂直循环。

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