首页> 外文期刊>Climate of the Past Discussions >Greenland accumulation and its connection to the large-scale atmospheric circulation in ERA-Interim and paleoclimate simulations
【24h】

Greenland accumulation and its connection to the large-scale atmospheric circulation in ERA-Interim and paleoclimate simulations

机译:ERA-中期和古气候模拟中的格陵兰积累及其与大规模大气环流的联系

获取原文
获取外文期刊封面目录资料

摘要

Changes in Greenland accumulation and the stability in the relationship between accumulation variability and large-scale circulation are assessed by performing time-slice simulations for the present day, the preindustrial era, the early Holocene, and the Last Glacial Maximum (LGM) with a comprehensive climate model. The stability issue is an important prerequisite for reconstructions of Northern Hemisphere atmospheric circulation variability based on accumulation or precipitation proxy records from Greenland ice cores. The analysis reveals that the relationship between accumulation variability and large-scale circulation undergoes a significant seasonal cycle. As the contributions of the individual seasons to the annual signal change, annual mean accumulation variability is not necessarily related to the same atmospheric circulation patterns during the different climate states. Interestingly, within a season, local Greenland accumulation variability is indeed linked to a consistent circulation pattern, which is observed for all studied climate periods, even for the LGM. Hence, it would be possible to deduce a reliable reconstruction of seasonal atmospheric variability (e.g., for North Atlantic winters) if an accumulation or precipitation proxy were available that resolves single seasons. We further show that the simulated impacts of orbital forcing and changes in the ice sheet topography on Greenland accumulation exhibit strong spatial differences, emphasizing that accumulation records from different ice core sites regarding both interannual and long-term (centennial to millennial) variability cannot be expected to look alike since they include a distinct local signature. The only uniform signal to external forcing is the strong decrease in Greenland accumulation during glacial (LGM) conditions and an increase associated with the recent rise in greenhouse gas concentrations.
机译:通过对今天,工业化前时代,早期全新世和最后冰期最大值(LGM)进行时间切片模拟,对格陵兰岛上的变化以及积累变化与大规模环流之间关系的稳定性进行了综合评估气候模型。稳定性问题是根据格陵兰冰芯的积累或降水代用记录重建北半球大气环流变化的重要前提。分析表明,累积变异性与大规模环流之间的关系经历了一个重要的季节性周期。由于各个季节对年度信号的贡献变化,因此在不同气候状态下,年度平均积累变化不一定与相同的大气环流模式有关。有趣的是,在一个季节内,格陵兰当地的积聚变化确实与一致的环流模式有关,在所有研究的气候时期,甚至对于LGM都观察到这种环流。因此,如果有能够解决单个季节的积聚或降水代理,就有可能推断出季节性大气变化的可靠重建(例如,北大西洋冬季)。我们进一步表明,轨道强迫和冰盖地形变化对格陵兰岛堆积的模拟影响表现出强烈的空间差异,强调无法预期来自不同冰芯站点的关于年际和长期(百年至千禧年)变异性的堆积记录看起来很相似,因为它们包括独特的本地签名。外部强迫的唯一统一信号是冰川(LGM)期间格陵兰的积蓄大量减少,以及最近温室气体浓度上升带来的增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号