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首页> 外文期刊>Dynamics of Atmospheres and Oceans >Modeling the intrusion of the Loop Current into the Gulf of Mexico
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Modeling the intrusion of the Loop Current into the Gulf of Mexico

机译:模拟环路电流侵入墨西哥湾

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The Loop Current (LC) intrusion into the Gulf of Mexico is analyzed using steady, 2-D nonlinear shallow water equations expressed in Cartesian and natural coordinates. The model suggests that the LC moves with constant relative vorticity along isopleths of the Bernoulli function B such that its surface area (A) has a steady dA/dt and frontal velocity. The intrusion is envisioned as an initial transport imbalance that creates volume storage within the Gulf. Because of the advection of relative vorticity, the intruding inflow splits into a northward flow on the west and a southward flow on the east. The storage creates a sea level difference across the LC that induces a northward force due to Coriolis. This force reinforces the northward flow but opposes the southward flow, helping store water inside the Gulf. This sea level difference is in addition to the one in the B field. The storage implies loss of kinetic energy, which creates a speed shear across the LC and gives rise to the small speed of the LC front. The relative vorticity equation in natural coordinates reveals three aspects of the LC: (1) a velocity difference across the LC, (2) a parabolic shape of the sea surface; and (3) a negative curvature of the LC meaning the velocity changes direction anticyclonically along the B-contours.
机译:使用笛卡尔坐标和自然坐标表示的稳态二维非线性浅水方程,分析了侵入墨西哥湾的环路电流(LC)。该模型表明,LC沿着伯努利函数B的等值线以恒定的相对涡度运动,因此其表面积(A)具有稳定的dA / dt和正面速度。可以预见,入侵将是最初的运输失衡,从而在海湾地区形成大量的存储空间。由于相对涡流的平流作用,侵入的入流在西部分为北流,在东部分成南流。储层在整个LC区域产生海平面差异,从而由于科里奥利(Coriolis)引起北向力。这股力量增强了北向流动,但与南向流动相反,有助于将水储存在海湾内部。该海平面差异是B字段中的差异。储存意味着动能的损失,这会在LC上产生速度剪切,并导致LC前沿的速度变小。自然坐标中的相对涡度方程揭示了LC的三个方面:(1)穿过LC的速度差,(2)海面呈抛物线形状; (3)LC的负曲率表示速度沿B轮廓反方向变化。

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