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Storm impacts on alpine lakes: Antecedent weather conditions matter more than the event intensity

机译:风暴影响着高山湖泊:前天气条件超过事件强度

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Extreme weather events may be just as important as gradual trends for the long-term trajectories of ecosystems. For alpine lakes, which are exposed to both exacerbated atmospheric warming and intense episodic weather events, future conditions might not be appropriately forecast by only climate change trends, i.e. warming, if extreme events have the potential to deflect their thermal and metabolic states from their seasonal ranges. We used high-frequency monitoring data over three open-water seasons with a one-dimensional hydrodynamic model of the high-altitude Lake Muzelle (France) to show that rainstorms or windstorms, notwithstanding their intensity, did not trigger long-lasting consequences to the lake characteristics when light penetration into the lake was not modified. In contrast, storms associated with high turbidity input from the watershed (turbid storms) strongly modified the lacustrine hydrodynamics and metabolism for the rest of the open-water season through reduced light penetration. The long-lasting effects of turbid storms were related to the inputs and in-lake persistence of very light glacial suspensoids from the watershed. The occurrence of the observed turbid storms was not related to the wind or rain intensities during the events. Instead, the turbid storms occurred after dry and atypically warm spells, i.e. meteorological conditions expected to be more frequent in this alpine region in the upcoming decades. Consequently, storm events, notwithstanding their intensity, are expected to strongly imprint the future ecological status of alpine lakes under climate warming.
机译:极端天气事件可能与生态系统长期轨迹的渐进趋势一样重要。对于暴露于加剧的大气变暖和激烈的焦化天气事件的高山湖泊,如果极端事件有可能将其热量和代谢状态从其季节性转移,因此可能不会被持续的气候变化趋势(即变暖)适当预测未来的情况。范围。我们使用了三个开放式季节的高频监测数据,具有高海拔湖穆泽勒(法国)的一维流体动力模型来表明,尽管有着它们的强度,但仍未引发持久的后果Lake特性当光渗透到湖中没有修改。相比之下,与流域(混浊风暴)的高浊度输入相关的风暴通过减少光穿透,强烈地修改了其余的开放水季节的湖泊流体动力学和代谢。混浊风暴的持久效果与流域的非常轻冰悬浮液的投入和湖泊持久性有关。观察到的浑体风暴的发生与事件期间的风或雨强度无关。相反,干燥和非典型温暖的法术后发生混浊风暴,即预期在即将到来的几十年中,在这个高山地区预期的气象状况将更频繁。因此,尽管他们的强度,风暴事件预计将强烈打印在气候变暖下的高山湖泊的未来生态状态。

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