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在对全球 102 个湖泊的分析中,深层水域的变化不如表层水域一致。

Deeper waters are changing less consistently than surface waters in a global analysis of 102 lakes.

机构信息

Department of Biology, Miami University, Oxford, OH, USA.

Faculty of Biology, Belarusian State University, Minsk, Belarus.

出版信息

Sci Rep. 2020 Nov 25;10(1):20514. doi: 10.1038/s41598-020-76873-x.

Abstract

Globally, lake surface water temperatures have warmed rapidly relative to air temperatures, but changes in deepwater temperatures and vertical thermal structure are still largely unknown. We have compiled the most comprehensive data set to date of long-term (1970-2009) summertime vertical temperature profiles in lakes across the world to examine trends and drivers of whole-lake vertical thermal structure. We found significant increases in surface water temperatures across lakes at an average rate of + 0.37 °C decade, comparable to changes reported previously for other lakes, and similarly consistent trends of increasing water column stability (+ 0.08 kg m decade). In contrast, however, deepwater temperature trends showed little change on average (+ 0.06 °C decade), but had high variability across lakes, with trends in individual lakes ranging from - 0.68 °C decade to + 0.65 °C decade. The variability in deepwater temperature trends was not explained by trends in either surface water temperatures or thermal stability within lakes, and only 8.4% was explained by lake thermal region or local lake characteristics in a random forest analysis. These findings suggest that external drivers beyond our tested lake characteristics are important in explaining long-term trends in thermal structure, such as local to regional climate patterns or additional external anthropogenic influences.

摘要

全球范围内,相对于空气温度而言,湖泊表面水温迅速升高,但深层水温变化和垂直热结构仍然知之甚少。我们编制了迄今为止最全面的数据集,其中包含全球湖泊长期(1970-2009 年)夏季垂直温度剖面数据,以研究整个湖泊垂直热结构的变化趋势和驱动因素。我们发现,湖泊表面水温呈显著上升趋势,平均升温速率为每十年 0.37°C,与先前报道的其他湖泊的变化相当,且水柱稳定性呈同样一致的上升趋势(每十年增加 0.08kg/m)。然而,与表面水温的变化趋势相比,深层水温的变化趋势平均变化不大(每十年仅增加 0.06°C),但湖泊之间存在很大的变异性,个别湖泊的变化趋势范围从每十年下降 0.68°C 到上升 0.65°C。深层水温变化趋势的变异性不能用湖泊内部的表面水温或热稳定性变化趋势来解释,在随机森林分析中,仅有 8.4%可以用湖泊热区或当地湖泊特征来解释。这些发现表明,在解释热结构的长期变化趋势时,除了我们测试的湖泊特征之外,还有其他外部驱动因素很重要,例如局部到区域的气候模式或其他外部人为影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4fb/7688658/1d26d3af90cf/41598_2020_76873_Fig1_HTML.jpg

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