首页> 外文期刊>Brazilian Journal of Geology >The Mato Perso Conduit System: evidence of silicic magma transport in the southern portion of the Paraná-Etendeka LIP, Brazil
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The Mato Perso Conduit System: evidence of silicic magma transport in the southern portion of the Paraná-Etendeka LIP, Brazil

机译:Mato Perso管道系统:巴西Paraná-EtendekaLIP南部硅质岩浆运移的证据

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The Mato Perso Conduit System is described from a ~ 120 km 2 area in south Brazil exposing silicic volcanics of the Paraná-Etendeka LIP. A volcanic succession is defined by basaltic flows covered by flat-lying oxidized vitrophyres, banded vitrophyres cutting the lower lavas and grey flat-lying vitrophyres covering all the units. Flow morphologies determined by the recognition of structures, textures, and vesicle distribution were observed. Oxidized vitrophyres display massive flat-lying banded cores and flow tops from vesicular to frothy. Grey flat-lying vitrophyres have sharp contacts in the top of both basalt flows and oxidized vitrophyres, locally exhibit basal breccia and have a flat-lying foliation. Conduits are represented by banded vitrophyres and breccias, which outcrop in a 6 km wide, NW-SE oriented segment downthrown by normal faults towards the Antas River. The interpretation of the units on the geological map scale indicates intrusive contact relations. Recognition of dike-like structures in banded vitrophyres and dykes of oxidized vitrophyre are evidence of felsic magma transport. Based on field observations, we propose the emplacement of subaerial oxidized and grey vitrophyres fed by a fault-related conduit system. Sustained high temperature magmatic systems ensure the silicic lavas have a low viscosity and travel great distances.
机译:在巴西南部〜120 km 2的区域中描述了Mato Perso管道系统,露出了Paraná-EtendekaLIP的硅质火山岩。火山演替是由被平坦的氧化的玻璃体覆盖的玄武岩流,切割下部熔岩的带状玻璃体和覆盖所有单元的灰色的平坦玻璃体定义的。观察到通过识别结构,质地和囊泡分布而确定的流动形态。氧化的玻璃化菌体显示出大量平坦的带状核心,并从水泡到泡沫顶。灰色的平坦的玻璃体在玄武岩流和氧化的玻璃体的顶部均具有尖锐的接触,局部表现出基底角砾岩并具有平坦的叶面。管道以条带状的玻璃体和角砾岩为代表,它们在6公里宽的NW-SE导向段露头,该段被正常断层向安塔斯河推倒。地质图比例尺上的单位解释表示侵入式接触关系。识别带状玻璃体和氧化玻璃体中的堤状结构是长岩浆运输的证据。根据现场观察,我们提出了由断层相关导管系统提供的地下氧化和灰色玻璃体的安置。持续的高温岩浆系统确保了硅质熔岩的黏度低,并且可以远距离传播。

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