...
首页> 外文期刊>Journal of Physical Oceanography >A Zonal Momentum Balance on Density Layers for the Central and Eastern Equatorial Pacific
【24h】

A Zonal Momentum Balance on Density Layers for the Central and Eastern Equatorial Pacific

机译:赤道中太平洋和东太平洋密度层上的带状动量平衡

获取原文
获取原文并翻译 | 示例

摘要

Brown et al. analyzed the kinematics of flow in the equatorial Pacific Ocean, along time-varying isopyc-nals in a three-dimensional eddy-permitting model. Here the dynamics of these flows is explored in the same model via the zonal momentum equation (ZME). Previous work has shown that the dominant terms of the ZME, on and near the equator, are the pressure gradient, wind stress, and Coriolis term. In one model study, the nonlinear and friction terms were significant but negated each other. In this study, with a higher-resolution model and more realistic friction scheme it is shown that the nonlinear term is important along and north of the equator, while the explicit friction term is negligible. The part of the nonlinear term derived from high-frequency eddy flows acts like a friction on the Equatorial Undercurrent, while the remaining part of the nonlinear term from smooth flows enhances it. In density coordinates, meridional tropical cells lie on either side of the equator in the first half of the year (January-June) as expected. In July-December, a continuous southward surface flow appears from 4°N into the Southern Hemisphere and arises from variations in the geostrophic flow and the nonlinear term. Variations in the geostrophic flow are due to both seasonal variability in the thermocline and a surface bolus effect arising from baroclinic instability. The nonlinear term increases in the surface layers at the same time assisting the southward flow, most likely because of tropical instability waves.
机译:布朗等。在三维涡流允许模型中,分析了沿赤道太平洋沿时变同形异构体的流动运动学。在此,通过区域动量方程(ZME)在同一模型中探索了这些流动的动力学。先前的工作表明,在赤道及其附近的ZME的主要项是压力梯度,风应力和科里奥利项。在一项模型研究中,非线性和摩擦项很重要,但彼此取反。在这项研究中,使用更高分辨率的模型和更现实的摩擦方案,表明非线性项在赤道以北和北部都很重要,而显式摩擦项则可以忽略不计。来自高频涡流的非线性项的一部分像对赤道暗流的摩擦一样起作用,而来自平滑流的非线性项的其余部分则增强了它。在密度坐标上,按预期,子午热带细胞在上半年(1月至6月)位于赤道的两侧。在7月至12月,从南北半球4°N出现了连续的向南地表流,这是由于地转流和非线性项的变化引起的。地转流的变化是由于温跃层的季节性变化和斜压不稳定引起的表面推注作用所致。非线性项在增加地表层的同时协助向南流动,这很可能是由于热带不稳定波所致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号