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Climate‐induced warming of lakes can be either amplified or suppressed by trends in water clarity

机译:水清晰度的趋势可以放大或抑制由气候引起的湖泊变暖

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Climate change is rapidly warming aquatic ecosystems including lakes and reservoirs. However, variability in lake characteristics can modulate how lakes respond to climate. Water clarity is especially important both because it influences the depth range over which heat is absorbed, and because it is changing in many lakes. Here, we show that simulated long‐term water clarity trends influence how both surface and bottom water temperatures of lakes and reservoirs respond to climate change. Clarity changes can either amplify or suppress climate‐induced warming, depending on lake depth and the direction of clarity change. Using a process‐based model to simulate 1894 north temperate lakes from 1979 to 2012, we show that a scenario of decreasing clarity at a conservative yet widely observed rate of 0.92% yr?1 warmed surface waters and cooled bottom waters at rates comparable in magnitude to climate‐induced warming. For lakes deeper than 6.5 m, decreasing clarity was sufficient to fully offset the effects of climate‐induced warming on median whole‐lake mean temperatures. Conversely, a scenario increasing clarity at the same rate cooled surface waters and warmed bottom waters relative to baseline warming rates. Furthermore, in 43% of lakes, increasing clarity more than doubled baseline bottom temperature warming rates. Long‐term empirical observations of water temperature in lakes with and without clarity trends support these simulation results. Together, these results demonstrate that water clarity trends may be as important as rising air temperatures in determining how waterbodies respond to climate change.
机译:气候变化正在迅速升温包括湖泊和水库在内的水生生态系统。但是,湖泊特征的变化可以调节湖泊对气候的响应方式。水的透明度尤为重要,因为它会影响热量吸收的深度范围,并且因为它在许多湖泊中都在变化。在这里,我们表明模拟的长期水净度趋势会影响湖泊和水库的地表水和底水温度对气候变化的响应方式。根据湖泊的深度和清晰度变化的方向,清晰度的变化可以放大或抑制气候导致的变暖。使用基于过程的模型来模拟1979年至2012年的1894个北部温带湖泊,我们发现了一种情景,即以保守的,但被广泛观察到的0.92%yr?1的变暖率和幅度可比的地表水和冷却的底水来降低清晰度。导致气候变暖。对于深于6.5 m的湖泊,降低的清晰度足以完全抵消气候变暖对全湖平均温度中值的影响。相反,相对于基线升温速率,在相同速率下增加地表水和底部水温的清晰度的方案。此外,在43%的湖泊中,增加的清晰度使基线底温变暖速率增加了一倍以上。有和没有清晰趋势的湖泊水温的长期经验观察都支持了这些模拟结果。总之,这些结果表明,在确定水体对气候变化的响应方式方面,水净度趋势可能与气温升高一样重要。

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