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末次间冰期全球地表温度变化及物理机制的模拟研究
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作者 熊力 刘博 孙咏 《第四纪研究》 CAS CSCD 北大核心 2023年第4期1010-1018,共9页
本研究基于第六次国际耦合模式比较计划(CMIP6)的末次间冰期模拟试验(lig127k)与工业革命前参照试验(piControl)数据,利用气候反馈响应分析方法,揭示了地球轨道参数改变引起的全球地表温度变化及其关键过程和机制。5个模式的分析结果表... 本研究基于第六次国际耦合模式比较计划(CMIP6)的末次间冰期模拟试验(lig127k)与工业革命前参照试验(piControl)数据,利用气候反馈响应分析方法,揭示了地球轨道参数改变引起的全球地表温度变化及其关键过程和机制。5个模式的分析结果表明:1)与piControl相比,lig127k试验中地球轨道参数的改变主要影响了大气层顶入射太阳辐射的季节性差异,其中北半球冬季大气层顶入射太阳辐射明显减少,全球平均为-19.60 W/m^(2),而夏季则显著增加,为20.42 W/m^(2),全年平均变化较小,仅为-0.06 W/m^(2);2)lig127k的地表温度也表现为冬季(夏季)显著的降低(升高),其中北半球冬季全球平均降温-0.61 K,夏季增温0.67 K;3)从物理过程分解来看,北半球冬季(夏季)的降温(增温)均主要来自大气层顶入射太阳辐射的贡献,其次来自水汽的正反馈贡献,而云辐射效应则抵消了大部分降温(增温);4)与工业革命前时期相比,在末次间冰期,海陆热力对比在北半球显著加强,而在南半球显著减弱,其中起正贡献的主要过程为陆地/海洋热输送和云辐射效应,而太阳辐射强迫效应和地表湍流热通量则是主要的负贡献项。 展开更多
关键词 末次间冰期 地表温度变化 物理机制 气候反馈响应分析方法 地球轨道参数变化 海陆热力对比
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Uncertainty in projections of the South Asian summer monsoon under global warming by CMIP6 models:Role of tropospheric meridional thermal contrast
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作者 Yunqi Kong Yuting Wu +2 位作者 Xiaoming Hu Yana Li Song Yang 《Atmospheric and Oceanic Science Letters》 CSCD 2022年第1期56-61,共6页
Driven by the increase in CO_(2)concentration,climate models reach a consensus that the large-scale circulation of the South Asian summer monsoon(SASM) becomes weakened but with different magnitudes.This study investi... Driven by the increase in CO_(2)concentration,climate models reach a consensus that the large-scale circulation of the South Asian summer monsoon(SASM) becomes weakened but with different magnitudes.This study investigates the major uncertainty sources of the SASM response to an abrupt quadrupling of CO_(2)(abrupt-4×CO_(2))in 18 models of phase 6 of the Coupled Model Intercomparison Project.The projected weakening of the SASM indicated by both zonal and meridional monsoon circulation indices is closely linked to decreases in the meridional gradient of upper-tropospheric temperature between Eurasia and the Indian Ocean(EUTT-IUTT).A climate feedback-response analysis method is applied to linearly decompose the uncertainty of changes in EUTT-IUTT into the partial changes due to external forcing and internal processes of the earth-atmosphere column.Results show that the uncertainty of changes in EUTT-IUTT is contributed positively by the dominant atmospheric dynamic process,followed by the cloud shortwave radiative effect,and negatively by the surface latent heat flux and cloud longwave radiative effect.Contributions from CO_(2)forcing and other internal processes including albedo and water vapor feedbacks,oceanic heat storage,and sensible heat flux are found to be minor. 展开更多
关键词 South Asian summer monsoon CMIP6 Uncertainty in model projection Meridional temperature gradient Climate Feedback-Response Analysis Method
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