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Seasonal and inter-annual variability of water column properties along the Rottnest continental shelf, south-west Australia

机译:沿澳大利亚州西南部罗特最大陆架的水柱特性的季节性和年度际变化

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摘要

A multi-year ocean glider dataset, obtained along a representative cross-shelf transect along the Rottnest continental shelf, south-west Australia, was used to characterise the seasonal and inter-annual variability of water column properties (temperature, salinity, and chlorophyll fluorescence distribution). All three variables showed distinct seasonal and inter-annual variations that were related to local and basin-scale ocean atmosphere processes. Controlling influences for the variability were attributed to forcing from two spatial scales: (1) the local scale (due to Leeuwin Current and dense shelf water cascades, DSWC) and (2) the basin scale (El Nino-Southern Oscillation, ENSO, events). In spring and summer, inner-shelf waters were well mixed due to strong wind mixing, and deeper waters (> 50 m) were vertically stratified in temperature that contributed to the presence of a subsurface chlorophyll maximum (SCM). On the inner shelf, chlorophyll fluorescence concentrations were highest in autumn and winter. DSWCs were also the main physical feature during autumn and winter. Chlorophyll fluorescence concentration was higher closer to the seabed than at the surface in spring, summer, and autumn. The seasonal patterns coincided with changes in the wind field (weaker winds in autumn) and air-sea fluxes (winter cooling and summer evaporation). Inter-annual variation was associated with ENSO events. Lower temperatures, higher salinity, and higher chlorophyll fluorescence (> 1 mg m(-3)) were associated with the El Nino event in 2010. During the strong La Nina event in 2011, temperatures increased and salinity and chlorophyll fluorescence decreased (< 1 mg m(-3)). It is concluded that the observed seasonal and inter-annual variabilities in chlorophyll fluorescence concentrations were related to the changes in physical forcing (wind forcing, Leeuwin Current, and air-sea heat and moisture fluxes).
机译:沿着沿南澳大利亚州罗特最大陆架的代表性跨货架横断,沿着澳大利亚州鹿特最大的跨货架(澳大利亚州),用于表征水柱性能(温度,盐度和叶绿素荧光的年龄变异性)所获得的多年跨货架分配)。所有三个变量都显示出与本地和盆地级海洋气氛流程有关的不同季节性和年度变化。控制变异性的影响归因于迫使两个空间尺度:(1)本地规模(由于Leeuwin电流和密集的货架水级联,DSWC)和(2)盆地(El Nino-Southern振荡,ENSO,ENSO,事件)。在春季和夏季,由于强风搅拌,内部搁板水很好地混合,深水湿润(>50μm)在温度下垂直分层,这导致了叶绿素最大(SCM)的存在。在内架上,秋季和冬季叶绿素荧光浓度最高。 DSWCS也是秋冬期间的主要身体特征。叶绿素荧光浓度比春天,夏季和秋季的表面更接近海底。季节性模式恰逢风野(秋季较弱的风)和海运助流(冬季冷却和夏季蒸发)的变化。年间变异与ENSO事件有关。较低的温度,较高的盐度和更高的叶绿素荧光(> 1mg m(-3))与2010年的El Nino事件有关。在2011年的强烈La Nina事件期间,温度增加和盐酸血糖荧光下降(<1 mg m(-3))。结论是,观察到的叶绿素荧光浓度的季节性和年间变量与物理强制变化(风迫使,Leeuwin电流和空中海水和水分助水量)有关。

著录项

  • 来源
    《Ocean science》 |2019年第2期|共16页
  • 作者单位

    Univ Western Australia Oceans Grad Sch Perth WA 6009 Australia;

    Univ Western Australia Oceans Grad Sch Perth WA 6009 Australia;

    Univ Western Australia Sch Engn Perth WA 6009 Australia;

    Univ Western Australia Oceans Grad Sch Perth WA 6009 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

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