...
首页> 外文期刊>African Journal of Marine Science >Shallow-water, nearshore current dynamics in Algoa Bay, South Africa, with notes on the implications for larval fish dispersal
【24h】

Shallow-water, nearshore current dynamics in Algoa Bay, South Africa, with notes on the implications for larval fish dispersal

机译:南非Algoa湾的浅水近岸海流动态,并注意到了其对幼体鱼扩散的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Nearshore currents play a vital role in the transport of eggs and larval stages of fish. However, little is known about their complexity and the implications for dispersal of fish larvae. The study describes the complexity of the shallow nearshore environment in eastern Algoa Bay, on the south-east coast of South Africa, and its effect on larval fish ecology. An ADCP was used to assess short-term spatial current variability across the nearshore (4-20 m depth) during intensive one-day-transect profiling surveys. Data showing long-term temporal variability was collected half-hourly from a bottom-moored (15-20 m depth) ADCP over the course of one year (May 2006-May 2007). The short-term profiling revealed complexity in both current speed and direction with largely wind-driven flow patterns identified. The long-term data showed that the currents were aligned approximately west/east with prevailing winds and local shoreline. Modal speeds of 8 cm s(-1) near the surface (4 m) and 6 cm s(-1) near the bottom (14 m) of the water column are much lower than the average swimming speeds of postflexion larvae known to occur in the area. Mean current speed decreased with depth from similar to 30 cm s(-1) (4 m) to similar to 10 cm s(-1) (14 m), suggesting opportunities for depth refuge from current displacement in older larvae. Potential nett displacements were greater during the spring and summer, coinciding with peak fish breeding with passive eggs and early stage larvae travelling distances of up to 475 km near the surface of the water column. These maximum dispersal distances recorded during the present study differ considerably by half that from other calculations made for the area, highlighting a data error in a previous study. These predictions provide preliminary indications of potential transport from a point source and do not factor in anomalous local oceanography, benthic topographic impediments to transport or the complexities of larval fish behaviour.
机译:近岸水流在卵和鱼的幼体阶段的运输中起着至关重要的作用。然而,关于它们的复杂性及其对鱼幼虫散布的影响知之甚少。这项研究描述了南非东南沿海阿尔戈阿湾东部浅海环境的复杂性及其对幼体鱼类生态的影响。 ADCP用于在密集的一日样线剖面调查中评估近岸(4-20 m深度)的短期空间电流变化。在一年的时间内(2006年5月至2007年5月),每半小时从停泊在底部(深度15-20 m)的ADCP收集显示长期时间变异性的数据。短期分析揭示了当前速度和方向的复杂性,并确定了主要由风驱动的流动模式。长期数据显示,洋流与盛行风和当地海岸线大致向西/向东对齐。水柱表面(4 m)附近8 cm s(-1)和水柱底部(14 m)附近6 cm s(-1)的模态速度远低于已知的屈后后幼虫的平均游泳速度在那地区。平均电流速度随深度从大约30 cm s(-1)(4 m)降低到大约10 cm s(-1)(14 m),这表明在较老的幼虫中避开了电流避难所。在春季和夏季,潜在的净蚊帐位移会更大,这与被动卵产卵高峰期和早期幼虫在水柱表面附近的最大迁徙距离达475 km相吻合。在本研究中记录的最大散布距离与对该区域进行的其他计算相比,相差了一半,这突显了先前研究中的数据误差。这些预测提供了从点源进行潜在运输的初步迹象,并且没有将异常的当地海洋学,运输的底栖地形障碍或幼鱼行为的复杂性考虑在内。

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