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首页> 外文期刊>Journal of earth system science >Active rifting and bimodal volcanism in Proterozoic Papaghni sub-basin, Cuddapah basin (Andhra Pradesh), India
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Active rifting and bimodal volcanism in Proterozoic Papaghni sub-basin, Cuddapah basin (Andhra Pradesh), India

机译:印度Cuddapah盆地(Andhra Pradesh)前古代Papaghni子盆地的积极裂化与双峰岩

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Bimodal volcanism in the Cuddapah basin is associated with a cratonic rift setting. The Cuddapah basin consists of five sub-basins (viz., Papaghni, Nallamalai, Srisailam, Kurnool and Palnad) and a total thickness of $sim$12 km sediments and associated bimodal volcanics. The oval-shaped gravity high observed over the Papaghni sub-basin is due to lopolithic intrusions along listric faults. A basin evolution model is prepared in this context with signatures of active rifting.Mapping and geochemical sampling along the Tadpatria??Tonduru tract along with petrographic observations additionally supports the proposed model. The model presents the mechanism of bimodal volcanism during rifting and sedimentation. Basin evolution with tectonic modifications revealed a link with global tectonic events (e.g., $sim$1.8 Ga Hudsonian orogeny, $sim$1.3 Ga Grenville orogeny, $sim$0.9 Ga Enderbia docking). The stratigraphic disposition of the surge, flow, fall and volcaniclastic deposits in this old Proterozoic terrane indicate the magma history and eruption conditions. The felsic volcanic rocks are classified as rhyolite and rhyodacite. The mafic volcanics are mainly basaltic. Primordial mantle normalized trace element plots indicate enrichment of large ion lithophile elements (Rb, Th and K) along with negative Sr, P and Ti anomalies. The chondrite normalized REE patterns are characterized by LREE enrichment, negative Eu anomaly and flat HREE pattern. These features indicate origin of felsic volcanics through shallow crustal melting with plagioclase either as a residual or a fractionating phase. The mafic rocks of the area are product of shallow mantle melting related to asthenospheric upwelling followed by decompression melting and generation of basaltic magma. This was also associated with lithosphereic stretching, rifting and initiation of sedimentation. The less viscous mafic magma was probably channelized along the rift-related faults. The underplating and intraplating of hot mantle-derived magma supplied heat into the crust. The attendant partial melting of continental crust produced the felsic magma. Different sub-basins within the Cuddapah basin indicates a combined mechanism of rifting and orogenic events.
机译:Cuddapah盆地的双峰火山主义与克拉基裂缝环境有关。 Cuddapah盆地由五个次盆(Viz,Papaghni,Nallamai,Srisailam,Kurnool和Palnad)组成,以及$ SIM 12公里沉积物和相关双峰火山的总厚度。在纸纸底盆地观察到的椭圆形重力是由于沿着厕所缺陷的血管侵入性。在这种情况下制备了盆地演化模型,该背景下具有主动脱水的签名和沿着蝌蚪的地球化学抽样以及汽油道以及岩体观测另外支持所提出的模型。该模型呈现了河流和沉降过程中双峰的火山毒理学的机制。盆地进化与构造修改揭示了与全球构造事件的联系(例如,$ SIM $ 1.8 Ga Hudsonian Orenery,$ Sim $ 1.3 Ga Grenville Orenerogy,$ SIM $ 0.9 GA Enderbia对接)。这个古老的正面地层中浪涌,流动,秋季和火山沉积物的地层处置表明了岩浆历史和喷发条件。鹅肝岩被归类为流纹岩和rhyodacite。牛铁枪主要是玄武岩。原始地幔标准化痕量元素图表明大离子鳞片元素(RB,TH和K)以及阴性SR,P和Ti异常富集。 Chondrite标准化的REE模式的特征在于LREE富集,负欧盟异常和平坦的HREE模式。这些特征通过浅地壳熔化,用普发基酶作为残留或分馏相,指示猪肉火山的起源。该地区的MAFIC岩石是浅地幔熔融,与哮喘升值相关,其次是减压熔化和玄武岩岩浆的产生。这也与岩石梯楼舒展,裂化和沉淀引发有关。较少的粘性MAFIC岩浆可能沿着与裂谷相关的缺陷引发。热搭式岩浆岩浆的底层和介入热量进入地壳。欧洲地壳的伴随部分熔化产生了肠道岩浆。 Cuddapah盆地内的不同子盆地表明了剥离和造口事件的组合机制。

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