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Glacial meltwater dynamics in coastal waters west of the Antarctic peninsula

机译:南极半岛西部沿海水域的冰川融水动力学

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摘要

The annual advance and retreat of sea ice has been considered a major physical determinant of spatial and temporal changes in the structure of the Antarctic coastal marine ecosystem. However, the role of glacial meltwater on the hydrography of the Antarctic Peninsula ecosystem has been largely ignored, and the resulting biological effects have only been considered within a few kilometers from shore. Through several lines of evidence collected in conjunction with the Palmer Station Long-Term Ecological Research Project, we show that the freshening and warming of the coastal surface water over the summer months is influenced not solely by sea ice melt, as suggested by the literature, but largely by the influx of glacial meltwater. Moreover, the seasonal variability in the amount and extent of the glacial meltwater plume plays a critical role in the functioning of the biota by influencing the physical dynamics of the water (e.g., water column stratification, nearshore turbidity). From nearly a decade of observations (1991–1999), the presence of surface meltwater is correlated not only to phytoplankton blooms nearshore, but spatially over 100 km offshore. The amount of meltwater will also have important secondary effects on the ecosystem by influencing the timing of sea ice formation. Because air temperatures are statistically increasing along the Antarctic Peninsula region, the presence of glacial meltwater is likely to become more prevalent in these surface waters and continue to play an ever-increasing role in driving this fragile ecosystem.
机译:海冰的年度前进和后退被认为是南极沿海海洋生态系统结构时空变化的主要物理决定因素。但是,冰川融水在南极半岛生态系统水文学中的作用已被大大忽略,并且仅在距海岸几公里的范围内才考虑到了由此产生的生物影响。通过与Palmer Station长期生态研究项目结合收集的多条证据,我们表明,在夏季,沿海地表水的新鲜和变暖不仅受到文献所建议的海冰融化的影响,但主要是由于冰川融水的涌入。此外,冰川融水羽流的数量和程度的季节变化通过影响水的物理动力学(例如,水柱分层,近岸浊度)在生物群的功能中起关键作用。从近十年的观察(1991-1999年)中,地表融水的存在不仅与近海浮游植物的大量开花有关,而且与近海100多公里的空间有关。融水的量还将通过影响海冰形成的时间而对生态系统产生重要的次要影响。由于南极半岛地区的气温在统计上正在上升,冰川融化水的存在可能会在这些地表水中变得更加普遍,并在驱动这一脆弱的生态系统中继续发挥日益重要的作用。

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