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首页> 外文期刊>Geosphere >Linking a late Miocene-Pliocene hiatus in the deep-sea Bounty Fan off South Island, New Zealand, to onshore tectonism and lacustrine sediment storage
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Linking a late Miocene-Pliocene hiatus in the deep-sea Bounty Fan off South Island, New Zealand, to onshore tectonism and lacustrine sediment storage

机译:将新西兰南岛附近深海赏金扇中的中新世-上新世裂隙与陆上构造和湖相沉积物存储联系起来

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摘要

The cored record at Ocean Drilling Program Site 1122, located on the levee of the Bounty Fan off southeastern New Zealand, shows a major late Miocene to Pliocene (11.0–3.5 Ma) hiatus in sedimentation. This hiatus straddles a period of major uplift in the Southern Alps where the rivers that feed sediment to the Bounty Fan are ultimately sourced. There are no significant changes in sediment provenance across this interval. We link this hiatus to a combination of decreased sediment supply owing to tectonic disruption of fluvial drainage and a roughly simultaneous increase in bottom-current strength. Evidence for this scenario includes the distribution of current-generated structures in the core, the relative timing of an onshore transition from fluvial to lacustrine sedimentation, and a potential post-hiatus pulse of more weathered sediment into the Bounty Fan. This sediment pulse was possibly associated with the reestablishment of throughgoing drainage and the erosion and flushing of stored alluvial to lacustrine sediments through the system. Thus the Bounty Fan provides an excellent example of how the complex interplay between tectonic and paleoceanographic forces can affect the sedimentary record in deep-marine systems.
机译:位于新西兰东南部赏金迷大堤上的海洋钻探计划站点1122的核心记录, 显示了中新世至上新世的主要晚期(11.0–3.5 Ma) hiatus 在沉降中。该裂隙跨越了南部阿尔卑斯山的一段主要隆升期,最终向赏金迷们提供了沉积物。在此时间间隔内,沉积物出处没有显着的 变化。我们将此中断与由于河流排水的构造破坏和底流强度的大致同时增加而造成的沉积物供应减少的组合联系起来。 场景的证据包括 岩心中当前生成的构造的分布,从 到湖相沉积的陆上过渡的相对时间,以及潜在的hiatus 后更多风化的沉积物脉冲进入赏金迷。该沉积物 脉冲可能与重新建立贯穿的 排水以及通过系统对 湖泊沉积物的冲积物的冲刷和冲洗有关。因此,赏金迷 提供了一个很好的例子,说明 构造力和古海洋学力之间的复杂相互作用如何影响深海系统中的沉积物 记录。

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  • 来源
    《Geosphere》 |2011年第2期|305-312|共8页
  • 作者单位

    Department of Geological Sciences, 18111 Nordhoff Street, California State University, Northridge, California 91330-8266, USA;

    Department of Geology, University of Otago, P.O. Box 56, Dunedin, 9054, New Zealand;

    Department of Geology, University of Otago, P.O. Box 56, Dunedin, 9054, New Zealand;

    Department of Geological Sciences, 18111 Nordhoff Street, California State University, Northridge, California 91330-8266, USA;

    Antarctic Research Centre, Victoria University Wellington, P.O. Box 600, Wellington 6140, New Zealand;

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