...
首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Tidal effects on estuarine circulation and outflow plume in the Chesapeake Bay
【24h】

Tidal effects on estuarine circulation and outflow plume in the Chesapeake Bay

机译:潮汐对切萨皮克湾河口循环和流出羽流的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The response of the Chesapeake Bay to river discharge under the influence and absence of tide is simulated with a numerical model. Four numerical experiments are examined: (1) response to river discharge only; (2) response to river discharge plus an ambient coastal current along the shelf outside the bay; (3) response to river discharge and tidal forcing; and (4) response to river discharge, tidal forcing, and ambient coastal current. The general salinity distribution in the four cases is similar to observations inside the bay. Observed features, such as low salinity in the western side of the bay, are consistent in model results. Also, a typical estuarine circulation with seaward current in the upper layer and landward current in the lower layer is obtained in the four cases. The two cases without tide produce stronger subtidal currents than the cases with tide owing to greater frictional effects in the cases with tide. Differences in salinity distributions among the four cases appear mostly outside the bay in terms of the outflow plume structure. The two cases without tide produce an upstream (as in a Kelvin wave sense) or northward branch of the outflow plume, while the cases with tide produce an expected downstream or southward plume. Increased friction in the cases with tide changes the vertical structure of outflow at the entrance to the bay and induces large horizontal variations in the exchange flow. Consequently, the outflow from the bay is more influenced by the bottom than in the cases without tide. Therefore, a tendency for a bottom-advected plume appears in the cases with tide, rather than a surface-advected plume, which develops in the cases without tide. Further analysis shows that the tidal current favors a salt balance between the horizontal and vertical advection of salinity around the plume and hinders the upstream expansion of the plume outside the bay. (c) 2006 Elsevier Ltd. All rights reserved.
机译:用数值模型模拟了切萨皮克湾在潮汐影响和无潮情况下对河流流量的响应。检查了四个数值实验:(1)仅对河流流量的响应; (2)对河水排放的反应以及沿海湾外部搁板的周围沿海水流的响应; (3)对河道排洪和潮汐强迫的响应; (4)对河流流量,潮汐强迫和周围沿海水流的响应。这四种情况下的总体盐度分布与海湾内部的观测相似。观测到的特征(例如海湾西侧的低盐度)与模型结果一致。另外,在这四种情况下,获得了典型的河口环流,其中上层为海流,下层为陆流。由于潮汐情况下的摩擦作用较大,因此两个潮汐情况下的潮汐流比潮汐情况下更强。就流出羽流结构而言,这四种情况之间的盐度分布差异主要出现在海湾以外。这两个没有潮汐的情况产生了流出羽流的上游(如开尔文波感)或向北分支,而有潮汐的情况则产生了预期的下游羽流或向南羽流。在潮汐情况下,增加的摩擦力会改变舱口入口处的垂直流出结构,并引起交换流量的较大水平变化。因此,与没有潮汐的情况相比,从海湾流出的水受到底部的影响更大。因此,在有潮汐的情况下出现向底部平流的羽流的趋势,而不是在没有潮汐的情况下形成向表面平流的羽流的趋势。进一步的分析表明,潮流促进了羽流周围盐度水平和垂直平流之间的盐分平衡,并阻碍了羽流在海湾外部的上游扩张。 (c)2006 Elsevier Ltd.保留所有权利。

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