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A phenomenological approach shows a high coherence of warming patterns in dimictic aquatic systems across latitude

机译:现象学方法显示了跨纬度的拟水生系统中变暖模式的高度连贯性

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摘要

To predict the coherence in local responses to large-scale climatic forcing among aquatic systems, we developed a generalized approach to compare long-term data of dimictic water bodies based on phenomenologically defined hydrographic events. These climate-sensitive phases (inverse stratification, spring overturn, early thermal stratification, summer stagnation) were classified in a dual code (cold/warm) based on threshold temperatures. Accounting for a latitudinal gradient in seasonal timing of phases derived from gradients in cumulative irradiation (2.2 days per degree latitude), we found a high spatial and temporal coherence in warm–cold patterns for six lakes (84 %) and the Baltic Sea (78 %), even when using the same thresholds for all sites. Similarity to CW-codes for the North Sea still was up to 72 %. The approach allows prediction of phase-specific warming trends and resulting instantaneous or time-delayed ecological responses. Exemplarily, we show that warming during early thermal stratification controls food-web-mediated effects on key species during summer.
机译:为了预测水生系统之间对大规模气候强迫的局部响应的连贯性,我们开发了一种通用的方法,用于根据现象学定义的水文事件来比较二水质水体的长期数据。这些对气候敏感的阶段(逆分层,春季翻转,早期热分层,夏季停滞)基于阈值温度以双重代码(冷/暖)分类。考虑到累积辐照梯度(每度纬度2.2天)得出的各相的季节定时纬度梯度,我们发现六个湖泊(84%)和波罗的海(78%)的冷暖模式具有高度的时空连贯性%),即使对所有网站使用相同的阈值。与北海的CW代码的相似性仍然高达72%。该方法可以预测特定阶段的变暖趋势以及由此产生的瞬时或时滞生态响应。示例性地,我们表明,早期热分层过程中的变暖控制了夏季夏季食物网对关键物种的介导作用。

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