...
首页> 外文期刊>Journal of Physical Oceanography >Analytical Solutions for Circular Stratified Eddies of the Reduced-Gravity Shallow-Water Equations
【24h】

Analytical Solutions for Circular Stratified Eddies of the Reduced-Gravity Shallow-Water Equations

机译:重力降低浅水方程的圆形分层涡旋的解析解

获取原文
获取原文并翻译 | 示例

摘要

A set of new analytical nonstationary solutions of the nonlinear, reduced-gravity shallow-water equations on an f plane in a vertically stably stratified active environment is presented. The solutions, which describe the dynamics of inertially pulsating surface as well as intermediate lens-like stratified vortices, represent an extension of previous analytical solutions to more realistic vortex shapes and structures of the vortex swirl velocity fields in the presence of an arbitrary stable vertical stratification within the active environment. To elucidate aspects of the novelty of the new set of solutions, examples are presented referring to a vertically stratified surface vortex and to a vertically stratified intermediate vortex, both characterized by azimuthal velocity fields that are nonlinear functions of the radius and by layer shapes that largely deviate from paraboloidal shapes. First, a solution describing a five-layer surface "warm core" eddy is analyzed and characteristics resembling characteristics observed in geophysical surface vortices are revealed: Within each layer, the obtained azimuthal velocity shows a realistic distribution, as its maximum is located far from the vortex rim, where it is negligible. Moreover, the obtained azimuthal velocity is largest in the surface layer and decreases monotonically toward the deeper layers. Integral properties of the new stratified solutions significantly differ from the corresponding properties of equivalent, known homogeneous solutions. Significant differences are found, for instance, between the shape of a five-layer vortex and that of its homogenous counterpart having the same mean azimuthal velocity structure. Second, a solution referring to a five-layer intermediate "meddy like" vortex is analyzed: while in each layer the obtained azimuthal velocity is maximum in the interior part of the vortex and decreases toward its center and its periphery, its magnitude is largest in the intermediate layer and it decreases toward the surface and toward the bottom layer, which are characteristics resembling characteristics of observed meddies. The quoted examples demonstrate that the new solutions add substantial realism to the analytical description of oceanic nonlinear geophysical vortices. In the context of the nonlinear reduced-gravity shallow-water equations on an f plane they seem to represent the most general analytical features achievable, which refer to vertically stratified circular vortices characterized by linear radial velocity fields.
机译:提出了在垂直稳定的分层活动环境中,f平面上的非线性,减少重力的浅水方程组的一组新的解析非平稳解。描述惯性脉动表面以及中间透镜状分层涡旋动力学的解决方案,代表了先前分析解决方案在存在任意稳定垂直分层的情况下对更现实的涡旋形状和涡旋旋流速度场结构的扩展。在活跃的环境中。为了阐明新解决方案集的新颖性,我们以垂直分层的表面涡旋和垂直分层的中间涡旋为例,这些示例均以半径为非线性函数的方位速度场和很大程度上是层状的特征为特征。偏离抛物面形状。首先,分析描述五层表面“暖芯”涡的解决方案,并揭示类似于地球物理表面涡流中观察到的特征的特征:在每一层内,所获得的方位角速度显示出真实的分布,因为其最大值位于远离地表的位置。涡流边沿,可以忽略不计。而且,所获得的方位角速度在表面层中最大,并且朝向较深层单调减小。新分层溶液的整体性质与等效的已知均质溶液的相应性质显着不同。例如,在五层涡旋的形状与具有相同平均方位角速度结构的同质对应物的形状之间,发现了显着差异。其次,分析了一个涉及五层中间“类似医学”涡旋的解决方案:虽然在每一层中,所获得的方位角速度在涡旋内部最大,并朝着其中心和其外围减小,但其幅值最大。中间层和中间层朝着表面和底层递减,这是类似于所观察药物的特征。引用的例子表明,新的解决方案为海洋非线性地球物理涡旋的分析描述增加了实质性。在f平面上的非线性重力降低浅水方程中,它们似乎代表了可实现的最一般的分析特征,这些特征是指以线性径向速度场为特征的垂直分层的圆形涡旋。

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