首页> 外文期刊>Bulletin of Volcanology >Flow banding in basaltic pillow lavas from the Early Archean Hooggenoeg Formation, Barberton Greenstone Belt, South Africa
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Flow banding in basaltic pillow lavas from the Early Archean Hooggenoeg Formation, Barberton Greenstone Belt, South Africa

机译:南非巴伯顿绿石带早始古宙Hooggenoeg组玄武质枕头熔岩中的流带

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摘要

Well-preserved pillow lavas in the uppermost part of the Early Archean volcanic sequence of the Hooggenoeg Formation in the Barberton Greenstone Belt exhibit pronounced flow banding. The banding is defined by mm to several cm thick alternations of pale green and a dark green, conspicuously variolitic variety of aphyric metabasalt. Concentrations of relatively immobile TiO2, Al2O3 and Cr in both varieties of lava are basaltic. Compositional differences between bands and variations in the lavas in general have been modified by alteration, but indicate mingling of two different basalts, one richer in TiO2, Al2O3, MgO, FeOt and probably Ni and Cr than the other, as the cause of the banding. The occurrence in certain pillows of blebs of dark metabasalt enclosed in pale green metabasalt, as well as cores of faintly banded or massive dark metabasalt, suggest that breakup into drops and slugs in the feeder channel to the lava flow initiated mingling. The inhomogeneous mixture was subsequently stretched and folded together during laminar shear flow through tubular pillows, while diffusion between bands led to partial homogenisation. The most common internal pattern defined by the flow banding in pillows is concentric. In some pillows the banding defines curious mushroom-like structures, commonly cored by dark, variolitic metabasalt, which we interpret as the result of secondary lateral flow due to counter-rotating, transverse (Dean) vortices induced by the axial flow of lava towards the flow front through bends, generally downward, in the tubular pillows. Other pillows exhibit weakly-banded or massive, dark, variolitic cores that are continuous with wedge-shaped apophyses and veins that intrude the flow banded carapace. These cores represent the flow of hotter and less viscous slugs of the dark lava type into cooled and stiffened pillows.
机译:Barberton绿石带Hooggenoeg组早期太古宙火山岩层的最上部保存完好的枕形熔岩表现出明显的流动带状。条带的定义是浅绿色和深绿色,显着的水成变质玄武岩的毫米到几厘米厚的交替。两种熔岩中相对不可移动的TiO 2 ,Al 2 O 3 和Cr的浓度均为玄武质。改变后,条带之间的成分差异和熔岩的变化已被改变,但表明两种不同的玄武岩混合在一起,其中一种富含TiO 2 ,Al 2 O 3 ,MgO,FeO t 以及可能的Ni和Cr比其他原因更为明显。在某些枕头中,浅绿色的玄武岩包裹着深色玄武岩的气泡,以及暗带状或块状的深色玄武岩的核芯的出现,表明在熔岩流的输水通道中破裂成滴状和团状状开始混合。随后,不均匀混合物在通过管状枕的层流剪切流中被拉伸并折叠在一起,而条带之间的扩散导致部分均质化。枕头上的流带定义的最常见内部样式是同心的。在某些枕头中,束带定义了奇特的蘑菇状结构,通常以深色的杂散玄武岩为中心,我们将其解释为由于熔岩流向岩心的反向旋转引起的横向(Dean)涡流引起的二次侧向流动的结果。通过管状枕头中的弯曲(通常是向下弯曲)使水流向前流动。其他枕头表现出弱带状或块状,深色,杂散性的核,这些核与楔形的顶突和侵入侵入带状甲壳的静脉连续。这些岩心代表深色熔岩类型的较热和较不粘稠的团块流入冷却且变硬的枕头中。

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