首页> 外文会议>Estuarine and Coastal Modeling >Modeling of West Florida Shelf Circulation for Spring 1999
【24h】

Modeling of West Florida Shelf Circulation for Spring 1999

机译:1999年春季西佛罗里达州货架流通的模型

获取原文

摘要

Mid-latitude continental shelves undergo a spring transition as the net surface heat flux changes from cooling to warming. Using in-situ data and a numerical circulation model we investigate the circulation and temperature budget on the West Florida Continental Shelf (WFS) for the spring transition of 1999. The model is a regional adaptation of the primitive equation, Princeton Ocean Model forced by NCEP re-analysis wind and heat flux fields and by river inflows. Based on agreements between the modeled and observed fields we use the model to draw inferences on how the surface momentum and heat fluxes affect the seasonal and synoptic scale variability. We account for a strong southeastward current at mid-shelf by the baroclinic response to combined wind and buoyancy forcing, and we show how this local forcing leads to annually occurring cold and low salinity tongues. Through term-by-term analyses of the temperature budget we describe the WFS temperature evolution in spring. Heat flux largely controls the seasonal transition, whereas ocean circulation largely controls the synoptic scale variability. Rivers contribute to the local hydrography and are important ecologically. Along with upwelling, river inflows facilitate frontal aggregation of nutrients and the spring formation of a high concentration chlorophyll plume near the shelf break (the so-called 'Green River'), coinciding with the cold, low salinity tongues. These features originate by local, shelf-wide forcing; the Loop Current is not an essential ingredient for spring transition of 1999.
机译:中纬度大陆架经历了一次春季过渡,这是因为净表面热通量从冷却变为温暖。利用原位数据和数值环流模型,我们调查了1999年春季过渡期西佛罗里达大陆架(WFS)的环流和温度收支。该模型是原始方程(NCEP强迫的普林斯顿海洋模型)的区域改编重新分析风和热通量场以及河流的流入量。基于模拟场和观测场之间的协议,我们使用该模型得出关于表面动量和热通量如何影响季节和天气尺度变化的推论。我们通过风压和浮力联合作用的斜压响应解释了陆架中期向东南强流的原因,并说明了这种局部强迫如何导致每年出现的寒冷和低盐度的舌头。通过对温度预算的逐项分析,我们描述了WFS春季的温度演变。热通量主要控制季节变化,而海洋环流主要控制天气尺度的变化。河流有助于当地的水文学,并且在生态上很重要。伴随着上升,河流的流入促进了养分的前沿聚集,并在架子断裂附近(所谓的“绿河”)附近形成了高浓度的叶绿素羽流的春季,这与寒冷,低盐度的舌头相吻合。这些功能源自本地的,在整个机架范围内的强制。回路电流不是1999年春季过渡的基本要素。

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