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Aeromagnetic signatures of Precambrian shield and suture zones of?Peninsular India

机译:印度半岛前寒武纪盾构和缝合带的航磁特征

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In many Precambrian provinces the understanding of the tectonic history is constrained by limited exposure and aeromagnetic data provide?information below the surface cover of sediments, water, etc. and help?build a tectonic model of the region. The advantage of using the aeromagnetic data is that the data set has uniform coverage and is independent of the accessibility of the region. In the present study, available reconnaissance scale aeromagnetic data over Peninsular India are analyzed to understand the magnetic signatures of the Precambrian shield and suture zones thereby throwing light on the tectonics of the region. Utilizing a combination of differential reduction to pole map, analytic signal, vertical and tilt derivative and upward continuation maps we are able to identify magnetic source distribution, tectonic elements, terrane boundaries, suture zones and metamorphic history of the region. The magnetic sources in the region are mainly related to charnockites, iron ore and alkaline intrusives. Our analysis suggests that the Chitradurga boundary shear and Sileru shear are terrane boundaries while we interpret the signatures of Palghat Cauvery and Achankovil shears to represent suture zones. Processes like metamorphism leave their signatures on the magnetic data: prograde granulites (charnockites) and retrograde eclogites are known to have high susceptibility. We find that charnockites intruded by alkali plutons have higher magnetization compared to the retrogressed charnockites. We interpret that the Dharwar craton to the north of isograd representing greenschist to amphibolite facies transition, has been subjected to metamorphism under low geothermal conditions. Some recent studies suggest a plate tectonic model of subduction–collision–accretion tectonics around the Palghat Cauvery shear zone (PCSZ). Our analysis is able to identify several west to east trending high amplitude magnetic anomalies with deep sources in the region from Palghat Cauvery shear to Achankovil shear. The magnetic high associated with PCSZ may represent the extruded high pressure–ultra high temperature metamorphic belt (granulites at shallow levels and retrogressed eclogites at deeper levels) formed as a result of subduction process. The EW highs within the Madurai block can be related to the metamorphosed clastic sediments, BIF and mafic/ultramafic bodies resulting from the process of accretion. Graphical abstract Display Omitted Highlights ? Aeromagnetic data identify tectonic blocks, terrain boundaries, suture zones, shears, faults. ? PCSZ magnetic high may represent extruded HP–UHT metamorphic belt formed as a result of subduction. ? E–W highs in Madurai block may be due to BIF and mafic/ultramafic bodies resulting from accretion.
机译:在许多前寒武纪的省份,对构造历史的了解受到有限的暴露的限制,航磁数据提供了沉积物,水等表面覆盖物下方的信息,并有助于建立该地区的构造模型。使用航磁数据的优点是数据集具有统一的覆盖范围,并且与区域的可访问性无关。在本研究中,分析了印度半岛上可用的侦察规模的航空磁数据,以了解前寒武纪盾构和缝合带的磁特征,从而将光线投射到该地区的构造上。结合极差图,极谱图,分析信号,垂直和倾斜导数以及向上连续图的组合,我们能够识别出该区域的磁源分布,构造要素,地层边界,缝合带和变质史。该地区的磁源主要与霞石,铁矿石和碱性侵入物有关。我们的分析表明,Chitradurga边界剪切和Sileru剪切是地层边界,而我们解释了Palghat Cauvery和Achankovil剪切的特征来表示缝合区域。像变质这样的过程在磁数据上留下了自己的印记:已知粗粒岩(菱镁矿)和逆榴辉岩具有很高的磁化率。我们发现,与倒退的霞石相比,被碱金属lut侵入的霞石具有更高的磁化强度。我们解释说,等梯度以北的Dharwar克拉通代表了绿片岩到角闪石相的过渡,在低地热条件下已经发生了变质作用。最近的一些研究表明,帕尔加特洞穴群剪切带(PCSZ)周围的俯冲-碰撞-增生构造的板块构造模型。我们的分析能够确定从Palghat Cauvery切变至Achankovil切变区域内一些具有深部震源的东西向趋势高振幅磁异常。与PCSZ相关的磁高可能代表了俯冲过程形成的挤压的高压-超高温变质带(浅水平的粒状云母和深水平的后榴辉岩)。 Madurai区块内的EW高可能与增生过程中变质的碎屑沉积物,BIF和镁铁质/超镁铁质体有关。图形摘要显示省略的突出显示?航磁数据可识别构造块,地形边界,缝合带,剪切,断层。 ? PCSZ磁高可能表示俯冲作用形成的挤压的HP–UHT变质带。 ? Madurai街区的E-W高可能是由于BIF和吸积所形成的镁铁质/超音波生物。

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