首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Geological model and development of the Cenozoic Wiang Pa Pao Basin, Chiang Rai Province, Northern Thailand, based on gravity data modelling and surface structural interpretation
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Geological model and development of the Cenozoic Wiang Pa Pao Basin, Chiang Rai Province, Northern Thailand, based on gravity data modelling and surface structural interpretation

机译:基于重力数据建模和表面结构解释的地质模型与泰国北部泰国北部川Pao Pao Pao Pao Pao Pao Pao Pao Pao Pao Pao

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3-D Inverse gravity modelling, constrained by surface geological data across the Neogene Wiang Pa Pao Basin (WPB), Northern Thailand, provides new subsurface models of the basin geometry and its structural development. The intermontaine WPB is seismically active and exhibits many geothermal sites; both are indicative of active fault zones. Six hundred thirty-six terrestrial gravity stations with similar to 500 m spacing were acquired. The residual Complete Bouguer Anomaly map (CBA) reveals an N-S elongate basin characterized by gravity lows bounded by gravity highs on the eastern margin of the basin (metasedimentary basement), and moderate gravity anomalies on the western margin (granitic basement). Structural edge detection revealed N-S trending faults along the eastern and western margins linked by NE-SW and NW-SE trending lineaments. The 3-D gravity model indicates an asymmetric graben; with a maximum depocenter depth of similar to 1300 m. Surface structure and seismicity confirm the gravity interpretation that the WPB is a dextral transtensional basin characterized by WSW-ENE trending R-shears and NNE-SSW R-shears distributed in duplex-like geometries along the N-S trending principal displacement zone. The WPB displays unusually well-developed R-shears, where Palaeozoic metasedimentary rocks in the basement and Cenozoic basin sediments are present, these faults disappear to the south, where the main N-S fault resides entirely within the granite. The WPB is associated with Cenozoic multiphase rifting: in the Late Oligocene-Miocene, major rift basins formed under W-E extension, strongly influenced by WSW-ENE to NE-SW and NW-SE pre-existing trends. In the Latest Miocene-Recent, the younger basins, including the WPB, underwent dextral strike-slip along new and existing N-S dextral fault trends.
机译:3-D逆重力建模,受到泰国北部Neogene Wiang Pa Pao Pao Bao盆地(WPB)的地面地质数据约束,提供了盆地几何形状的新地下模型及其结构发展。 Intermontaine WPB是地震活动的,展示许多地热部位;两者都表示有源故障区域。获得了类似于500米间距的六百三十六个陆地重力站。残留的完整Bouguer异常地图(CBA)揭示了一种N-S细长盆地,其特征在于盆地(Metaseiarary地下室)的东部边缘的重力高度高度高,西部边缘(花岗岩地下室)中适中的重力异常。结构边缘检测透露了NE-SW和NW-SE趋势谱系连接的东方和西方利润的N-S趋势断层。 3-D重力模型表示不对称的graben;具有最大的软化物深度与1300米相似。表面结构和地震性证实了WPB是由WSW-ene趋向的R型横剪和NNE-SSW R剪切以沿着N-S趋势主位移区分布的WSW-ene趋势盆和NNE-SSW R剪切的重力解释。 WPB显示出异乎寻常开发的R剪,其中包括地下室和新生代盆地沉积物中的古生代元岩石,这些故障消失在南方,主要的N-S故障完全在花岗岩内。 WPB与新生代多相裂化有关:在晚期寡茂 - 中生,在W-E延伸下形成的主要裂隙盆地,受到WSW-ENE的强烈影响到NE-SW和NW-SE预先存在的趋势。在最新的新世代最近,较年轻的盆地,包括WPB,沿着新的和现有的N-S右旋断层趋势进行右侧滑行。

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