末次间冰期气候的大尺度特征:CMIP6-PMIP4的lig127k模拟评估结果

B. Otto‐Bliesner, E. Brady, Anni Zhao, C. Brierley, Y. Axford, E. Capron, A. Govin, J. Hoffman, Elizabeth B. Isaacs, M. Kageyama, Paulo Scussolini, P. Tzedakis, C. Williams, E. Wolff, A. Abe‐Ouchi, P. Braconnot, S. Buarque, Jian Cao, A. Vernal, Maria Vittoria Guarino, Chuncheng Guo, A. Legrande, Gerrit Lohmann, K. Meissner, L. Menviel, K. Nisancioglu, Ryouta O’ishi, D. Mélia, Xioaoxu Shi, M. Sicard, L. Sime, R. Tomas, E. Volodin, Nicolas Yeung, Qiong Zhang, Zhonghi Zhang, Weipeng Zheng
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引用次数: 25

摘要

使用基于物理的工具对古气候进行建模,越来越被视为对用于预测未来气候变化的模式进行强有力的样本外检验。CMIP6的新项目是一级lig127k实验,旨在解决比全新世中期实验更强的轨道强迫下的气候响应,使用相同的最先进的模型并遵循共同的实验方案。我们提出了一个由17个气候模式组成的多模式集合,除了两个模式外,其他模式都完成了CMIP6 DECK实验。这些模式的平衡气候敏感性(ECS)在2.1到5.3℃之间变化。日照异常的季节特征导致lig127k集合中北半球(NH)大陆与piccontrol相比在6 - 7 - 8月出现了强烈的变暖,北极夏季海冰范围的最小值(8 - 9月)大大减少。多模式结果表明,北半球夏季季风降水和面积增加,南半球减少。这些响应在lig127k比全新世中期模拟更大,这是由127 ka比6 ka更大的日照异常所预期的。针对127ka的地表温度和降水,已经开发了新的合成,以便与多模式集合进行比较。lig127k模式集合和数据重建与加拿大、斯堪的纳维亚和北大西洋的夏季温度异常以及北半球大陆的降水非常吻合。模型与数据的比较和错配表明,进一步研究模拟对特定边界条件下不确定性的敏感性,以及当前代理重建中不确定性和稀疏覆盖的敏感性。CMIP6-PMIP4 lig127k模拟结合代理记录,对未来对季风、地表温度、北极海冰和格陵兰冰盖稳定性的预估具有潜在的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-scale features of Last Interglacial climate: Results from evaluating the lig127k simulations for CMIP6-PMIP4

The modeling of paleoclimate, using physically based tools, is increasingly seen as a strong out-of-sample test of the models that are used for the projection of future climate changes. New to CMIP6 is the Tier 1 lig127k experiment, designed to address the climate responses to stronger orbital forcing than the midHolocene experiment, using the same state-of-the-art models and following a common experimental protocol. We present a multi-model ensemble of 17 climate models, all of which (except for two) have also completed the CMIP6 DECK experiments. The Equilibrium Climate Sensitivity (ECS) of these models varies from 2.1 to 5.3°C. The seasonal character of the insolation anomalies results in strong warming over the Northern Hemisphere (NH) continents in the lig127k ensemble as compared to the piControl in June-July-August and a much-reduced minimum (August-September) summer sea ice extent in the Arctic. The multi-model results indicate enhanced summer monsoonal precipitation and areal extent in the Northern Hemisphere and reductions in the Southern Hemisphere. These responses are greater in the lig127k than midHolocene simulations as expected from the larger insolation anomalies at 127 ka than 6 ka.

New syntheses for surface temperature and precipitation, targeted for 127ka, have been developed for comparison to the multi-model ensemble. The lig127k model ensemble and data reconstructions are in good agreement for summer temperature anomalies over Canada, Scandinavia, and the North Atlantic and precipitation over the Northern Hemisphere continents. The model-data comparisons and mismatches point to further study of the sensitivity of the simulations to uncertainties in the specified boundary conditions and of the uncertainties and sparse coverage in current proxy reconstructions.

The CMIP6-PMIP4 lig127k simulations, in combination with the proxy record, have potential implications for confidence in future projections of monsoons, surface temperature, Arctic sea ice, and the stability of the Greenland ice sheet.

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