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Seasonal modulation of the Asian summer monsoon between the Medieval Warm Period and Little Ice Age: a multi model study

机译:中世纪暖期与小冰期之间亚洲夏季风的季节调制:多模型研究

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摘要

Instrumental and proxy records indicate remarkable global climate variability over the last millennium, influenced by solar irradiance, Earth’s orbital parameters, volcanic eruptions and human activities. Numerical model simulations and proxy data suggest an enhanced Asian summer monsoon during the Medieval Warm Period (MWP) compared to the Little Ice Age (LIA). Using multiple climate model simulations, we show that anomalous seasonal insolation over the Northern Hemisphere due to a long cycle of orbital parameters results in a modulation of the Asian summer monsoon transition between the MWP and LIA. Ten climate model simulations prescribing historical radiative forcing that includes orbital parameters consistently reproduce an enhanced MWP Asian monsoon in late summer and a weakened monsoon in early summer. Weakened, then enhanced Northern Hemisphere insolation before and after June leads to a seasonally asymmetric temperature response over the Eurasian continent, resulting in a seasonal reversal of the signs of MWP–LIA anomalies in land–sea thermal contrast, atmospheric circulation, and rainfall from early to late summer. This seasonal asymmetry in monsoon response is consistently found among the different climate models and is reproduced by an idealized model simulation forced solely by orbital parameters. The results of this study indicate that slow variation in the Earth’s orbital parameters contributes to centennial variability in the Asian monsoon transition.
机译:仪器和代理记录表明,在过去的一千年中,受太阳辐照度,地球轨道参数,火山喷发和人类活动的影响,全球气候变化显着。数值模型模拟和代理数据表明,与小冰期(LIA)相比,中世纪暖期(MWP)期间亚洲夏季风增强。使用多个气候模型模拟,我们显示,由于轨道参数周期长,北半球异常的季节日照导致MWP和LIA之间的亚洲夏季风转变。十个气候模型模拟规定了包括轨道参数在内的历史辐射强迫,在夏末持续再现了MWP增强的亚洲季风,在夏初再现了减弱的季风。 6月之前和之后北半球日照减弱,然后增强,导致欧亚大陆的季节温度响应不对称,导致陆地-海洋热力对比,大气环流和早期降雨的MWP-LIA异常迹象出现季节性逆转。到夏末。季风响应中的这种季节性不对称性在不同的气候模型中始终存在,并通过仅由轨道参数推动的理想化模型模拟得以再现。这项研究的结果表明,地球轨道参数的缓慢变化有助于亚洲季风过渡的百年变化。

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