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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Sensitivity of deep lake temperature to past and future climatic changes: A modeling study for Lac d'Annecy, France, and Ammersee, Germany - art. no. 4609
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Sensitivity of deep lake temperature to past and future climatic changes: A modeling study for Lac d'Annecy, France, and Ammersee, Germany - art. no. 4609

机译:深湖温度对过去和未来气候变化的敏感性:法国拉克安西和德国阿默湖的模型研究-艺术。没有。 4609

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1] Oxygen isotope ratios (delta(18)O) of deep-lake ostracod valves can provide excellent estimates of the oxygen isotopic composition of past atmospheric precipitation (delta(18)O(P)). One of the major steps of such a delta(18)O(P) reconstruction is the calculation of the delta(18)O of the lake water (delta(18)O(L)) from the valve delta(18)O, which includes an appropriate estimate of the past water temperature during valve formation. In order to simulate changes in lake vertical temperature profile and specifically the bottom water temperature during ostracod valve formation, we have redeveloped a one-dimensional eddy diffusion thermal lake model including a lake ice model and refined it by including a seasonal light extinction model. This model was tested for two different sites, Lac d'Annecy and Ammersee. Sensitivity studies show that the ostracod calcification temperature is approaching constant 3.7degreesC for colder, but may significantly vary for warmer than present conditions. In Lac d'Annecy, such temperature effects can lead to a significant underestimation of positive delta(18)O(P) excursions. In Ammersee the underestimation is smaller because the hypolimnic temperatures are less sensitive to surface temperature changes. Our model can be used to better constrain such temperature effects and such further increase the quality of the delta(18)O(L) and delta(18)O(P) reconstruction. [References: 40
机译:1]深湖蛇口形阀门的氧同位素比(delta(18)O)可以很好地估算过去大气降水的氧同位素组成(delta(18)O(P))。此类delta(18)O(P)重建的主要步骤之一是根据阀门delta(18)O计算湖水的delta(18)O(delta(18)O(L)),其中包括对阀门形成过程中过去水温的适当估计。为了模拟湖泊垂直温度曲线的变化,特别是在鱼阀形成过程中的底部水温的变化,我们重新开发了包含湖冰模型的一维涡流扩散热湖模型,并通过添加季节消光模型对其进行了改进。该模型已在Lac d'Annecy和Ammersee的两个不同地点进行了测试。敏感性研究表明,较冷的温度下,成虫的钙化温度接近3.7摄氏度,但较当前的温度高,其可能会发生显着变化。在拉纳西(Lac d'Annecy),这种温度影响可能导致对正delta(18)O(P)偏移的明显低估。在Ammersee中,低估估计值较小,这是因为下层温度对表面温度变化较不敏感。我们的模型可用于更好地限制这种温度影响,从而进一步提高delta(18)O(L)和delta(18)O(P)重建的质量。 [参考:40

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