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Solar sensitivity experiments for the pre-industrial time period using the comprehensive global climate model CCSM3 (Community Climate System Model 3)

机译:使用全面的全球气候模型CCsm3(社区气候系统模型3)对工业化前时期的太阳能敏感性实验

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摘要

The Southern Hemisphere Westerly Winds (SWW) constitute an important zonal circulation that influences large-scale precipitation patterns and ocean circulation. Variations in their intensity and latitudinal position have been suggested to exert a strong influence on the CO2 budget in the Southern Ocean, thus making them a potential factor affecting the global climate. The possible influence of solar forcing on SWW variability during the Holocene is addressed. Solar sensitivity experiments with a comprehensive global climate model (CCSM3) are carried out to study the response of SWW to solar variability. In addition, It is shown that a high-resolution iron record from the Chilean continental slope (41° S), which is interpreted to reflect changes in the position of the SWW, is significantly correlated with reconstructed solar activity during the past 3000 years. Taken together, the proxy and model results suggest that centennial-scale periods of lower (higher) solar activity caused equatorward (southward) shifts of the annual mean SWW.
机译:南半球西风(SWW)构成了重要的纬向环流,影响了大规模的降水模式和海洋环流。据建议,其强度和纬度位置的变化会对南大洋的二氧化碳预算产生很大影响,从而使其成为影响全球气候的潜在因素。解决了全新世期间太阳强迫对SWW变异性的可能影响。进行了具有综合全球气候模型(CCSM3)的太阳敏感性实验,以研究SWW对太阳多变性的响应。此外,研究表明,来自智利大陆坡(41°S)的高分辨率铁记录被解释为反映了SWW位置的变化,在过去3000年中与重建的太阳活动显着相关。两者合计,代理和模型结果表明,较低(较高)太阳活动的百年尺度时期引起年均SWW的赤道(向南)偏移。

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