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A model that reconciles major- and trace-element data from abyssal peridotites

机译:一种模型,可协调深海橄榄岩中的主要元素和痕量元素数据

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摘要

Abyssal peridotite samples from slow-spreading oceanic ridges have been interpreted as residues of near-fractional melting processes on the basis of trace-element data, whereas major-element compositions and modes of the same samples require interactions between migrating melts and residual solids, either by equilibrium porous flow, refertilization, or olivine crystallization. Modeling of major- and trace-element data shows that these peridotite samples are consistent with a variety of melting and melt migration histories that include elements or episodes both of near-fractional melting and of equilibrium porous flow. A component of equilibrium porous flow explains peridotite compositions better than olivine deposition or refertilization. Mixing of primary basalt liquids composed of variable proportions of unmodified liquid increments extracted by near-fractional melting, and of liquids transported by equilibrium porous flow generates local trend systematics like those observed in fractionation-corrected basalt compositions at slow-spreading ridges. Both the local trend in basalts and the fractionted trace elements in peridotites are absent at the fast-spreading East Pacific Rise, allowing simpler models of melting and melt migration than those required at Atlantic and Indian ridges and implying a spreading-rate or magma-flux dependence to the mechanism of melt extraction.
机译:根据痕量元素数据,缓慢扩散的海洋山脊的深海橄榄岩样品被解释为近分形熔融过程的残留物,而同一样品的主要元素组成和模式要求迁移的熔体与残余固体之间的相互作用,或者通过平衡的多孔流,溶蚀作用或橄榄石结晶。对主要元素和痕量元素数据的建模表明,这些橄榄岩样品与多种熔融和熔融迁移历史相一致,包括近乎分数熔融和平衡多孔流动的元素或事件。平衡多孔流的一个成分比橄榄石沉积或溶蚀作用更好地解释了橄榄岩的成分。由近比例熔融提取的可变比例的未改性液体增量组成的玄武岩液体与通过平衡多孔流传输的液体的混合,产生了局部趋势系统,就像在慢速扩散脊上经分馏校正的玄武岩成分所观察到的那样。快速扩散的东太平洋上升带既没有玄武岩的局部趋势,又没有橄榄岩中的微量元素,这使得熔体和熔体迁移的模型比大西洋和印度洋脊所需的模型更简单,这意味着扩散率或岩浆通量取决于熔体萃取的机理。

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