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首页> 外文期刊>Climate of the past >The sensitivity of the Arctic sea ice to orbitally induced insolation changes: a study of the mid-Holocene Paleoclimate Modelling Intercomparison Project 2 and 3 simulations
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The sensitivity of the Arctic sea ice to orbitally induced insolation changes: a study of the mid-Holocene Paleoclimate Modelling Intercomparison Project 2 and 3 simulations

机译:北极海冰对轨道诱发的日照变化的敏感性:全新世中期古气候模拟比对项目2和3的模拟研究

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摘要

In the present work the Arctic sea ice in the mid-Holocene and the pre-industrial climates are analysed and compared on the basis of climate-model results from the Paleoclimate Modelling Intercomparison Project phase 2 (PMIP2) and phase 3 (PMIP3). The PMIP3 models generally simulate smaller and thinner sea-ice extents than the PMIP2 models both for the pre-industrial and the mid-Holocene climate. Further, the PMIP2 and PMIP3 models all simulate a smaller and thinner Arctic summer sea-ice cover in the mid-Holocene than in the pre-industrial control climate. The PMIP3 models also simulate thinner winter sea ice than the PMIP2 models. The winter sea-ice extent response, i.e. the difference between the mid-Holocene and the pre-industrial climate, varies among both PMIP2 and PMIP3 models. Approximately one half of the models simulate a decrease in winter sea-ice extent and one half simulates an increase. The model-mean summer sea-ice extent is 11 % (21 %) smaller in the mid-Holocene than in the pre-industrial climate simulations in the PMIP2 (PMIP3). In accordance with the simple model of Thorndike (1992), the sea-ice thickness response to the insolation change from the pre-industrial to the mid-Holocene is stronger in models with thicker ice in the pre-industrial climate simulation. Further, the analyses show that climate models for which the Arctic sea-ice responses to increasing atmospheric CO_2 concentrations are similar may simulate rather different sea-ice responses to the change in solar forcing between the mid-Holocene and the pre-industrial. For two specific models, which are analysed in detail, this difference is found to be associated with differences in the simulated cloud fractions in the summer Arctic; in the model with a larger cloud fraction the effect of insolation change is muted. A sub-set of the mid-Holocene simulations in the PMIP ensemble exhibit open water off the north-eastern coast of Greenland in summer, which can provide a fetch for surface waves. This is in broad agreement with recent analyses of sea-ice proxies, indicating that beach-ridges formed on the north-eastern coast of Greenland during the early- to mid-Holocene.
机译:在目前的工作中,根据古气候模拟比对项目第二阶段(PMIP2)和第三阶段(PMIP3)的气候模型结果,对全新世中期和工业化前的北极海冰进行了分析和比较。在工业化前和全新世中期的气候条件下,与PMIP2模型相比,PMIP3模型通常模拟的海冰范围更小,更薄。此外,与工业化前的控制气候相比,PMIP2和PMIP3模型都模拟了全新世中期中较小的北极夏季海冰覆盖。与PMIP2模型相比,PMIP3模型还模拟更薄的冬季海冰。 PMIP2和PMIP3模型的冬季海冰范围响应(即全新世中期与工业化前气候之间的差异)各不相同。大约一半的模型模拟了冬季海冰范围的减少,而另一半则模拟了海冰范围的增加。在全新世中期,模型平均夏季海冰范围比PMIP2(PMIP3)的工业化前气候模拟小11%(21%)。根据Thorndike(1992)的简单模型,在工业化前气候模拟中,冰厚的模型中,从工业化前到全新世中期的日照变化的海冰厚度响应更强。此外,分析表明,北极海冰对大气中CO_2浓度增加的响应相似的气候模式可能模拟了全新世中期与工业化前期对太阳强迫变化的不同的海冰响应。对于两个具体模型进行了详细分析,发现这种差异与夏季北极地区模拟云部分的差异有关。在云量较大的模型中,日照变化的影响被忽略。 PMIP整体中全新世中期模拟的子集在夏季显示格陵兰东北海岸外的开阔水域,这可以为面波提供获取。这与最近对海冰代理的分析基本一致,表明在全新世早期至中期,格陵兰东北海岸形成了海滩脊。

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  • 来源
    《Climate of the past》 |2013年第2期|969-982|共14页
  • 作者单位

    Linne Flow Centre, Dept. of Mechanics, Royal Institute of Technology, Stockholm, Sweden,Bert Bolin Centre for Climate Research, Stockholm University, Stockholm, Sweden;

    Linne Flow Centre, Dept. of Mechanics, Royal Institute of Technology, Stockholm, Sweden,Bert Bolin Centre for Climate Research, Stockholm University, Stockholm, Sweden;

    Bert Bolin Centre for Climate Research, Stockholm University, Stockholm, Sweden,Dept. of Meteorology, Stockholm University, Stockholm, Sweden;

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