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Episodic swell growth inferred from variable uplift of the Cape Verde hotspot islands

机译:从佛得角热点岛屿的不同隆升推断出间歇性膨胀增长

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On the Beagle voyage, Charles Darwin first noted the creation and subsidence of ocean islands, establishing in geology?s infancy that island freeboard changes with time. Hotspot ocean islands have an obvious mechanism for freeboard change through the growth of the bathymetric anomaly, or swell, on which the islands rest. Models for swell development indicate that flexural, thermal or dynamic pressure contributions, as well as spreading of melt residue from the hotspot, can all contribute to island uplift. Here we test various models for swell development using the uplift histories for the islands of the Cape Verde hotspot, derived from isotopic dating of marine terraces and subaerial to submarine lava-flow morphologies. The island uplift histories, in conjunction with inter-island spacing, uplift rate and timing differences, rule out flexural, thermal or dynamic pressure contributions. We also find that uplift cannot be reconciled with models that advocate the spreading of melt residue in swell development unless swell growth is episodic. Instead, we infer from the uplift histories that two processes have acted to raise the islands during the past 6Myr. During an initial phase, mantle processes acted to build the swell. Subsequently, magmatic intrusions at the island edifice caused 350m of local uplift at the scale of individual islands. Finally, swell-wide uplift contributed a further 100m of surface rise.
机译:在小猎犬号航行中,查尔斯·达尔文(Charles Darwin)首先注意到了海洋岛屿的形成和沉陷,这在地质学的初期就确定了岛屿干舷随时间变化。热点海洋岛屿具有明显的机制,可通过这些岛屿所处的测深异常或膨胀的增长来改变干舷。膨胀发展的模型表明,弯曲,热或动压力的贡献,以及热点上熔渣的扩散,都可能导致岛屿抬升。在这里,我们使用佛得角热点岛屿的隆升历史测试了各种涌浪发展模型,这些历史是从海洋阶地和海底到海底熔岩流形态的同位素测年得出的。岛上隆升的历史,加上岛际间距,隆升速率和时间差异,排除了弯曲,热或动压的影响。我们还发现,除非溶胀增长是偶发性的,否则隆升不能与主张溶胀残余物在溶胀发展中扩散的模型相吻合。取而代之的是,我们从隆升的历史推断出在过去的6年中,有两个过程起到了提高岛屿的作用。在初始阶段,地幔过程起到了膨胀作用。随后,对岛屿大厦的岩浆侵入造成了单个岛屿规模的350m局部隆起。最后,大范围的隆升进一步促进了100m的地面上升。

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