首页> 外文学位 >Rapid climate change in the tropical Americas during the late-glacial interval and the Holocene.
【24h】

Rapid climate change in the tropical Americas during the late-glacial interval and the Holocene.

机译:晚冰川期和全新世期间热带美洲的快速气候变化。

获取原文
获取原文并翻译 | 示例

摘要

Till deposits, related to advances of mountain glaciers, and lake sediments record periods of abrupt warming and cooling during the Late Glacial interval (LG) (17,500 to 11,650 cal yr BP) in the northern tropical Andes. The synchronicity of temperature shifts in the tropical mountains and high northern latitudes during this period indicates that the low latitude atmosphere played a major role in LG abrupt climate change. Generally, the northern tropics are cold and dry when temperatures are lower in the North Atlantic region, and the opposite occurs during warm periods. The pattern of abrupt seesaw-like hemispheric temperature shifts, and the apparent link to tropical atmospheric dynamics, demonstrates the importance of low latitude circulation and water vapor feedbacks in rapid climate change.;Geologic evidence from the precipitation-sensitive southern tropical Andes were used to reconstruct periods of ice advances and retreats during the Late Holocene. Neoglaciation in the Cordillera Raura of Peru began at ∼3100 cal yr BP, marking a transition to a prolonged period of increased moisture transport to the Andes. The most extensive neoglacial advance took place locally during the Little Ice Age when conditions were both wetter and colder. The long-term, Holocene pattern of renewed ice cover in this region of the Andes was probably enhanced by astronomical forcing and convection-driven changes in moisture availability. Short-term glacial variability during the neoglacial was likely driven mostly by a combination of solar, atmospheric and oceanic processes.;Lake sediments from the Pacific region of Nicaragua were used to record changes in the regional moisture balance during the late Holocene (∼1600 cal yr BP to the present). Oxygen isotope values of calcium carbonate down-core identify periods of lake level fluctuations that resulted from changes in precipitation and evaporation rates. The driest regional conditions recorded in the isotope data are coincident with the onset of Little Ice Age cooling. This abrupt transition to more arid atmospheric conditions at 700 cal yr BP is consistent with other records from the northern tropics and subtropics that suggest hydrologic changes in the tropics were connected to high latitude climate variability during the late Holocene.
机译:与山区冰川发展有关的耕作沉积物和湖泊沉积物记录了北部热带安第斯山脉晚冰川期(LG)(17,500至11,650 cal BP)期间的突然增温和降温期。在此期间,热带山区和北部高纬度地区的温度变化同步,表明低纬度大气在LG突变的气候变化中起了主要作用。通常,北大西洋地区的温度较低时,北热带寒冷而干燥,而在暖期则相反。突然像跷跷板一样的半球温度变化的模式,以及与热带大气动力学的明显联系,证明了低纬度环流和水汽反馈在快速气候变化中的重要性。在全新世晚期重建冰的进退期。秘鲁科尔迪勒拉劳拉的新冰期始于约3100 cal yr BP,标志着向向安第斯山脉增加水分输送的长期过渡。在小冰河时期,当天气既湿又冷时,最广泛的新冰川发生在当地。天文学强迫和对流驱动的水分供应变化可能会增强安第斯山脉该地区新的冰盖的长期全新世格局。新冰期的短期冰川变化可能主要是由太阳,大气和海洋过程共同驱动的。尼加拉瓜太平洋地区的湖泊沉积物被用来记录全新世晚期(约1600 cal)的区域水分平衡的变化。 BP到现在)。碳酸钙下核的氧同位素值确定了由降水和蒸发速率变化导致的湖面波动时期。同位素数据中记录的最干燥的区域条件与小冰期降温的发生相吻合。在700 cal BP时突然过渡到更干旱的大气条件,这与北热带和亚热带的其他记录一致,表明热带地区的水文变化与全新世晚期的高纬度气候变化有关。

著录项

  • 作者

    Stansell, Nathan D.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Geology.;Geochemistry.;Climate change.;Continental dynamics.;Geomorphology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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