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Role of Arc Processes in the Formation of Continental Crust

机译:电弧过程在地壳形成中的作用

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We review data and recent research on arc composition, focusing on the relatively complete arc crustal sections in the Jurassic Talkeetna arc (south central Alaska) and the Cretaceous Kohistan arc (northwest Pakistan), together with seismic data on the lower crust and uppermost mantle. Whereas primitive arc lavas are dominantly basaltic, the Kohistan crust is clearly andesitic and the Talkeetna crust could be andesitic. The andesitic compositions of the two arc sections are within the range of estimates for the major element composition of continental crust. Calculated seismic sections for Kohistan and Talkeetna provide a close match for the thicker parts of the active Izu arc, suggesting that it, too, could have an andesitic bulk composition. Because andesitic crust is buoyant with respect to the underlying mantle, much of this material represents a net addition to continental crust. Production of bulk crust from a parental melt in equilibrium with mantle olivine or pyroxene requires processing of igneous crust, probably via density instabilities. Delamination of dense cumulates from the base of arc crust, foundering into less dense, underlying mantle peridotite, is likely, as supported by geochemical evidence from Talkeetna and Kohistan. Relamination of buoyant, subducting material-during sediment subduction, subduction erosion, arc-arc collision, and continental collision-is also likely.
机译:我们回顾了有关弧组成的数据和最新研究,重点是侏罗纪塔基特纳弧(阿拉斯加中南部)和白垩纪科伊斯坦弧(巴基斯坦西北部)中相对完整的地壳剖面,以及下地壳和最上地幔的地震数据。原始弧熔岩主要是玄武质,而科希斯坦地壳则明显是安山岩,而塔基特纳地壳则可能是安山岩。两个弧形剖面的安山组成在大陆壳主要元素组成的估算范围内。计算得出的Kohistan和Talkeetna地震剖面与活跃的伊豆弧的较厚部分非常吻合,表明它也可能具有安山岩块体成分。由于安山岩地壳相对于下地幔是漂浮的,因此这种物质的大部分代表了大陆地壳的净增加。在与地幔橄榄石或辉石保持平衡的情况下,由母体熔体生产大块地壳需要处理火成地壳,这可能是由于密度不稳定性所致。 Talkeetna和Kohistan的地球化学证据证实,致密的堆积物可能会从地壳底部分层,并逐渐沉入密度较低的地幔橄榄岩中。在沉积物俯冲,俯冲侵蚀,弧弧碰撞和大陆碰撞期间,也有可能对浮力,俯冲物质进行分层。

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