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Response of the Baltic and North Seas to river runoff from the Baltic watershed - Physical and biological changes

机译:波罗的海和北海对波罗的海流域河流径流的响应-物理和生物学变化

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摘要

Selected Baltic Sea watershed River Runoff (BSRR) events during 1970-2000 were used as predictor in Generalised Linear Mixed Models (GLIMMIX) for evidence of simultaneous changes/chain of events (including possible time lags) in some chemical, physical and biological variables in the Baltic and North Sea ecosystems. Our aim was to explore for climatic-based explanation for ecological regime shifts that were documented semi-simultaneously in both ecosystems. Certain similarities were identified in the North Sea and the Baltic Sea salinity, oxygen concentration, temperature and phyto- and zooplankton parameters. These findings suggest that BSRR events which originate in the Baltic Sea catchment area modify and contribute to large scale ecosystem changes not only in the Baltic Sea, but also in the adjacent parts of the North Sea. However, the Baltic Sea inter-annual and inter-decadal variabilities of physical and biological parameters are driven by direct atmospheric forcing, typically with a relatively short lag. In contrast, such changes in the North Sea are influenced by both local and direct atmospheric forcing, typically with a longer lag than in the Baltic, and a more regional, indirect forcing from changes in the North Atlantic. We suggest that this interactive system partially is behind large scale ecosystem regime shifts found in both Seas. During our study period two such shifts have been identified independently from us in a study earlier in the Southern and Central Baltic in 1980s and 1990s and a later one in 2001/2002 in the North Sea. As a post hoc test we compared the 0+ year class strength of the North Sea herring with BSRR intensity, and found evidence for higher herring production in high BSRR periods, which further corroborates the idea of a remote effect from the large watershed area of the Baltic. Regime shifts as well as their semi-synchronous appearance in two neighbouring sea areas could be identified. GLIMMIX models provide opportunities for determining and understanding the mechanisms behind marine ecosystem long-term and large-scale changes. Many studies have shown the importance of climatic factors (identified by the air pressure index, North Atlantic Oscillation) to the physical and biological changes over the North Atlantic. Our study enlarges the areal and temporal scope of these observations, and provides further support and explanation for climate as the pacemaker for marine ecological changes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:1970-2000年间选定的波罗的海分水岭河流径流(BSRR)事件被用作广义线性混合模型(GLIMMIX)的预测因子,以证明事件中某些化学,物理和生物学变量的同时变化/事件链(包括可能的时间滞后)。波罗的海和北海的生态系统。我们的目的是探索对两个生态系统中同时记录的生态系统变化进行基于气候的解释。在北海和波罗的海的盐度,氧气浓度,温度以及浮游植物和浮游动物参数中发现了某些相似之处。这些发现表明,起源于波罗的海集水区的BSRR事件不仅在波罗的海而且在北海的邻近地区都发生了变化,并助长了大规模的生态系统变化。然而,波罗的海的物理和生物参数的年际和年代际变化是由直接的大气强迫驱动的,通常具有相对较短的滞后。相比之下,北海的这种变化受本地和直接大气强迫的影响,通常比波罗的海的滞后时间长,而北大西洋的变化则是区域性的间接强迫。我们建议该互动系统部分是在两个海域发现的大规模生态系统状态转变的背后。在我们的研究期间,早在1980年代和1990年代在波罗的海南部和中部的一项研究以及在2001/2002年在北海的另一项研究中,就已经独立地从我们身上发现了两次这样的转变。作为事后检验,我们将北海鲱鱼的0+年级强度与BSRR强度进行了比较,并发现了在高BSRR时期鲱鱼产量更高的证据,这进一步证实了从大流域的偏远影响的想法。波罗的海。可以确定两个相邻海域的政权转移及其半同步出现。 GLIMMIX模型为确定和理解海洋生态系统长期和大规模变化背后的机制提供了机会。许多研究表明,气候因素(由气压指数,北大西洋涛动确定)对北大西洋的物理和生物变化很重要。我们的研究扩大了这些观测的时空范围,并为气候作为海洋生态变化的起搏器提供了进一步的支持和解释。 (C)2015 Elsevier Ltd.保留所有权利。

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  • 来源
    《Progress in Oceanography》 |2015年第novaptaa期|91-104|共14页
  • 作者单位

    Univ Turku, Archipelago Res Inst, FI-20014 Turku, Finland;

    Univ Turku, Archipelago Res Inst, FI-20014 Turku, Finland;

    Univ Turku, Archipelago Res Inst, FI-20014 Turku, Finland;

    Sir Alister Hardy Fdn Ocean Sci & Marine Biol Ass, Plymouth PL1 2PB, Devon, England|Univ Plymouth, Inst Marine, Plymouth PL4 8AA, Devon, England;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:34:18

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