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Consequences of open-system melting in tectonics

机译:构造学中开放系统融化的后果

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Partial melting and melt drainage from deep suprasolidus crust in orogens has important consequences for tectonics. Melt extraction along prograde segments of clockwise P-T paths reduces fertility and increases the density and strength of residual crust, which has implications for further melt production during decompression. Using calculated P-T phase diagrams, implications of stepwise melt loss along clockwise P-T paths for pelite and greywacke are assessed, and density of the progressively more residual source and the potential role of buoyancy in the exhumation of deep crustal rocks are evaluated. Two model P-T paths are considered: isobaric heating at 1.2 GPa followed by decompression to 0.4 GPa at 750, 820 and 890 °C, and prograde heating from the fluidpresent solidus at 1.2 GPa to 860 °C at 1.8 GPa followed by isothermal decompression to 0.4 GPa. Both closedsystem (undrained) and conditionally open-system (drained by intermittent melt loss) conditions are assessed. If melt is drained along clockwise P-T paths in suprasolidus crust then lower quantities of melt will be generated during decompression than sometimes inferred in tectonic models. Instead, the role of melt transfer through suprasolidus crust and melt accumulation at shallow levels in the anatectic zone should be considered rather than simply invoking the generation of large volumes of melt in decompressing crust.
机译:造山带上固相线深层结壳的部分融化和熔体排泄对构造具有重要意义。沿顺时针P-T路径前进段的熔体提取会降低生育力,并增加残余结皮的密度和强度,这对减压过程中进一步产生熔体有影响。使用计算出的P-T相图,评估了沿顺时针P-T路径逐步熔融损失对pelite和greywacke的影响,并评估了越来越多的残留源的密度以及浮力在深地壳岩石发掘中的潜在作用。考虑了两个模型PT路径:在750、820和890°C下将等压加热至1.2 GPa,然后减压至0.4 GPa,并从在1.2 GPa的流体存在的固相线加热至1.8 GPa的860°C进行加热,然后将等温减压至0.4 GPa。评估了封闭系统(不排水)和有条件开放系统(间歇性熔体流失)的条件。如果沿超固结壳中的顺时针P-T路径排出熔体,那么在减压过程中将产生比有时在构造模型中推断的熔体量少的熔体。取而代之的是,应该考虑通过固相线以上的地壳转移熔体以及在浅水区的浅层熔体聚集的作用,而不是在减压地壳中简单地引起大量熔体的产生。

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