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Scientific drilling of Lake Chalco, Basin of Mexico (MexiDrill)

机译:墨西哥盆地湖的科学钻井(Mexidrill)

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The primary scientific objective of MexiDrill, the Basin of Mexico Drilling Program, is development of a continuous, high-resolution ~400 kyr lacustrine record of tropical North American environmental change. The field location, in the densely populated, water-stressed Mexico City region gives this record particular societal relevance. A detailed paleoclimate reconstruction from central Mexico will enhance our understanding of long-term natural climate variability in the North American tropics and its relationship with changes at higher latitudes. The site lies at the northern margin of the Intertropical Convergence Zone (ITCZ), where modern precipitation amounts are influenced by sea surface temperatures in the Pacific and Atlantic basins. During the Last Glacial Maximum (LGM), more winter precipitation at the site is hypothesized to have been a consequence of a southward displacement of the mid-latitude westerlies. It thus represents a key spatial node for understanding large-scale hydrological variability of tropical and subtropical North America and is at an altitude (2240 m a.s.l.), typical of much of western North America. In addition, its sediments contain a rich record of pre-Holocene volcanic history; knowledge of the magnitude and frequency relationships of the area's explosive volcanic eruptions will improve capacity for risk assessment of future activity. Explosive eruption deposits will also be used to provide the backbone of a robust chronology necessary for full exploitation of the paleoclimate record. Here we report initial results from, and outreach activities of, the 2016 coring campaign.
机译:墨西哥钻井计划盆地梅克西尔的初级科学目标是开发一种连续,高分辨率〜400 Kyrline的热带北美环境变化。在浓密的墨西哥城市地区的野外位置给出了这一纪录的特定社会相关性。来自墨西哥中部的详细古古怪的重建将加强我们对北美热带热带长期自然气候变异的理解及其与较高纬度变化的关系。该网站位于捷径收敛区(ITCZ)的北边缘,现代降水量受太平洋和大西洋盆地的海面温度影响。在最后的冰川最大值(LGM)期间,该网站的冬季降水是假设的,这是中纬度西风的南方位移的结果。因此,它代表了一个关键空间节点,用于了解热带和亚热带北美的大规模水文变异性,并且是海拔(2240米A.L.),典型的西北部大部分地区。此外,其沉积物含有丰富的全新世火山历史记录;了解该地区爆炸性火山爆发的幅度和频率关系将提高风险评估的能力。爆炸性喷发沉积物还将用于提供完全开发古古波风格记录所需的强大年表的骨干。在这里,我们举报2016年取代运动的初始结果和外联活动。

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