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Pleistocene glacial history of the New Zealand subantarctic islands

机译:新西兰小卒中群岛的全能冰川历史

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摘要

The New Zealand subantarctic islands of Auckland and Campbell, situated between the subtropical front and the Antarctic Convergence in the Pacific sector of the Southern Ocean, provide valuable terrestrial records from a globally important climatic region. Whilst the islands show clear evidence of past glaciation, the timing and mechanisms behind Pleistocene environmental and climate changes remain uncertain. Here we present a multidisciplinary study of the islands-including marine and terrestrial geomorphological surveys, extensive analyses of sedimentary sequences, a comprehensive dating programme, and glacier flow line modelling-to investigate multiple phases of glaciation across the islands. We find evidence that the Auckland Islands hosted a small ice cap 384 000 +/- 26 000 years ago (384 +/- 26 ka), most likely during Marine Isotope Stage 10, a period when the subtropical front was reportedly north of its present-day latitude by several degrees, and consistent with hemispheric-wide glacial expansion. Flow line modelling constrained by field evidence suggests a more restricted glacial period prior to the LGM that formed substantial valley glaciers on the Campbell and Auckland Islands around 72-62 ka. Despite previous interpretations that suggest the maximum glacial extent occurred in the form of valley glaciation at the Last Glacial Maximum (LGM; similar to 21 ka), our combined approach suggests minimal LGM glaciation across the New Zealand subantarctic islands and that no glaciers were present during the Antarctic Cold Reversal (ACR; similar to 15-13 ka). Instead, modelling implies that despite a regional mean annual air temperature depression of similar to 5 degrees C during the LGM, a combination of high seasonality and low precipitation left the islands incapable of sustaining significant glaciation. We suggest that northwards expansion of winter sea ice during the LGM and subsequent ACR led to precipitation starvation across the middle to high latitudes of the Southern Ocean, resulting in restricted glaciation of the subantarctic islands.
机译:奥克兰和坎贝尔的新西兰下巴露群岛位于南海太平洋地区的亚热带前沿和南极融合之间,提供了来自全球重要气候区域的宝贵地面记录。虽然岛屿显示出过去冰川的明确证据,但新兴环境和气候变化背后的时间和机制仍然不确定。在这里,我们展示了对岛屿的多学科研究 - 包括海洋和陆地地貌调查,广泛分析沉积序列,全面的约会计划和冰川流线建模 - 调查岛上冰川的多个阶段。我们发现证据表明,奥克兰群岛举办了一个小型冰帽384 000 +/- 26 000年前(384 +/- 26 ka),最有可能在海洋同位素第10阶段,据报道,亚热带前部的一段时间 - 日纬度为几度,并与半球宽的冰川扩张一致。流线建模受到现场证据的约束,在LGM之前提出了一个更受限制的冰川时期,在坎贝尔和奥克兰岛上形成大约72-62 ka的山谷山谷。尽管先前的解释表明,在最后冰川最大值(LGM;类似于21 kA)的谷冰川形式的最大冰川范围内发生了最大的冰川程度,但我们的合并方法表明新西兰小管道岛上的最小LGM冰川冰川,并且在此期间不会存在冰川南极冷逆转(ACR;类似于15-13 kA)。相反,建模意味着尽管在LGM期间具有与5摄氏度相似的区域平均空气温度凹陷,但高季节性和低降水的组合使岛上无法进行显着冰川。我们建议在LGM和随后的ACR期间向北扩建冬季海冰导致南洋中部到高纬度地区的降水饥饿,导致小管道岛的冰川冰川。

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  • 来源
    《Climate of the past》 |2019年第2期|423-448|共26页
  • 作者单位

    Univ Keele Sch Geog Geol & Environm ICELAB Keele ST5 5BG Staffs England;

    Univ New South Wales Sch Biol Earth & Environm Sci Palaeontol Geobiol & Earth Arch Res Ctr PANGEA Sydney NSW Australia|Univ New South Wales Australian Res Council Ctr Excellence Australian Biodivers & Heritage CA Sydney NSW 2052 Australia;

    Victoria Univ Wellington Antarctic Res Ctr Wellington 6140 New Zealand|GNS Sci Lower Hutt 5011 New Zealand;

    Landcare Res Long Term Ecol Lab Lincoln New Zealand|Univ Auckland Sch Environm Private Bag 92019 Auckland 1142 New Zealand;

    Landcare Res Long Term Ecol Lab Lincoln New Zealand;

    Univ Waikato Waikato Radiocarbon Lab Private Bag 3105 Hamilton New Zealand|Univ Waikato ARC Ctr Excellence Australian Biodivers & Heritage Hamilton 3240 New Zealand;

    Univ Wollongong Sch Earth & Environm Sci Ctr Archaeol Sci Wollongong NSW Australia|Univ Wollongong ARC Ctr Excellence Australian Biodivers & Heritage Wollongong NSW 2522 Australia;

    Univ New South Wales Sch Biol Earth & Environm Sci Palaeontol Geobiol & Earth Arch Res Ctr PANGEA Sydney NSW Australia|Univ New South Wales Australian Res Council Ctr Excellence Australian Biodivers & Heritage CA Sydney NSW 2052 Australia;

    Univ Wollongong Sch Earth & Environm Sci Ctr Archaeol Sci Wollongong NSW Australia|Univ Wollongong ARC Ctr Excellence Australian Biodivers & Heritage Wollongong NSW 2522 Australia;

    Univ Exeter Dept Geog Exeter EX4 4RJ Devon England;

    Univ New South Wales Sch Biol Earth & Environm Sci Palaeontol Geobiol & Earth Arch Res Ctr PANGEA Sydney NSW Australia|Univ New South Wales Australian Res Council Ctr Excellence Australian Biodivers & Heritage CA Sydney NSW 2052 Australia;

    Univ Dundee Sch Environm Nethergate DD1 4HN Scotland;

    Univ Colorado Inst Arctic & Alpine Res Boulder CO 80309 USA;

    Stockholm Univ Bolin Ctr Climate Res Stockholm Sweden|Stockholm Univ Dept Geol Sci Stockholm Sweden;

    Univ New South Wales ARC Ctr Excellence Climate Syst Sci Sydney NSW Australia;

    Gondwana Tree Ring Lab POB 14 Canterbury 7546 New Zealand;

    Victoria Univ Wellington Sch Geog Environm & Earth Sci Wellington New Zealand;

    Univ East Anglia Sch Environm Sci Ctr Ocean & Atmospher Studies Norwich NR4 7TJ Norfolk England;

    Univ Keele Sch Geog Geol & Environm ICELAB Keele ST5 5BG Staffs England|Univ New South Wales Sch Biol Earth & Environm Sci Palaeontol Geobiol & Earth Arch Res Ctr PANGEA Sydney NSW Australia;

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