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首页> 外文期刊>Water resources research >Interfacing a one-dimensional lake model with a single-column atmospheric model: 2. Thermal response of the deep Lake Geneva, Switzerland under a 2 × CO_2 global climate change
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Interfacing a one-dimensional lake model with a single-column atmospheric model: 2. Thermal response of the deep Lake Geneva, Switzerland under a 2 × CO_2 global climate change

机译:一维湖模型与单柱大气模型的接口:2.在2×CO_2全球气候变化下瑞士日内瓦深湖的热响应

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摘要

In the companion to the present paper, the one-dimensional k-£ lake model SIMSTRAT is coupled to a single-column atmospheric model, nicknamed FIZC, and an application of the coupled model to the deep Lake Geneva, Switzerland, is described. In this paper, the response of Lake Geneva to global warming caused by an increase in atmospheric carbon dioxide concentration (i.e., 2 × CO_2) is investigated. Coupling the models allowed for feedbacks between the lake surface and the atmosphere and produced changes in atmospheric moisture and cloud cover that further modified the downward radiation fluxes. The time evolution of atmospheric variables as well as those of the lake's thermal profile could be reproduced realistically by devising a set of adjustable parameters. In a "control" 1 × CO_2 climate experiment, the coupled FIZC-SIMSTRAT model demonstrated genuine skills in reproducing epilimnetic and hypolimnetic temperatures, with annual mean errors and standard deviations of 0.25℃ ± 0.25℃ and 0.3℃ ± 0.15℃, respectively. Doubling the CO2 concentration induced an atmospheric warming that impacted the lake's thermal structure, increasing the stability of the water column and extending the stratified period by 3 weeks. Epilimnetic temperatures were seen to increase by 2.6℃ to 4.2℃, while hypolimnion temperatures increased by 2.2℃. Climate change modified components of the surface energy budget through changes mainly in air temperature, moisture, and cloud cover. During summer, reduced cloud cover resulted in an increase in the annual net solar radiation budget. A larger water vapor deficit at the air-water interface induced a cooling effect in the lake.
机译:在本文的陪同下,将一维k-£湖模型SIMSTRAT耦合到一个昵称为FIZC的单柱大气模型,并描述了该耦合模型在瑞士日内瓦湖的深层应用。本文研究了日内瓦湖对由于大气中二氧化碳浓度(即2×CO_2)增加而引起的全球变暖的响应。耦合这些模型可以在湖泊表面和大气之间进行反馈,并产生大气湿度和云量变化,从而进一步改变了向下的辐射通量。通过设计一套可调节的参数,可以真实地再现出大气变量的时间演变以及湖泊热廓线的时间演变。在“控制” 1×CO_2气候实验中,FIZC-SIMSTRAT耦合模型证明了再现上,下限温度的真实技能,年均误差和标准偏差分别为0.25℃±0.25℃和0.3℃±0.15℃。 CO2浓度加倍导致大气变暖,影响了湖泊的热力结构,增加了水柱的稳定性,并将分层期延长了3周。上表层温度升高了2.6℃至4.2℃,下层温度升高了2.2℃。气候变化主要通过改变气温,湿度和云量来改变表面能收支的组成部分。在夏季,云量减少导致年度太阳净辐射预算增加。空气-水界面处较大的水蒸气赤字在湖泊中引起了降温作用。

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  • 来源
    《Water resources research》 |2012年第6期|p.W06522.1-W06522.14|共14页
  • 作者单位

    Climatic Change and Climate Impacts, University of Geneva, 7 Route de Drize, CH-1227 Carouge, Switzerland;

    Climatic Change and Climate Impacts, University of Geneva, Carouge, Switzerland;

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