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Complex fold and thrust belt structural styles: Examples from the Greater Juha area of the Papuan Fold and Thrust Belt, Papua New Guinea

机译:复杂的褶皱和冲断带构造样式:以巴布亚新几内亚巴布亚褶皱和冲断带的大朱哈地区为例

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The remote and inhospitable Papuan Fold Belt in Papua New Guinea is one of the youngest yet least well documented fold and thrust belts on Earth. Within the frontal Greater Juha area we have carried out >100 km of geological traverses and associated analyses that have added significantly to the contemporary geological and geophysical dataset. Our structural analysis provides evidence of major inversion, detachment and triangle zone faults within the uplifted Eastern Muller Ranges. We have used the dataset to develop a quasi-3D model for the Greater Juha area, with associated cross-sections revealing that the exposed Cenozoic Darai Limestone is well-constrained with very low shortening of 12.6-21.4% yet structures are elevated up to 7 km above regional. We suggest the inversion of pre-existing rift architecture is the primary influence on the evolution of the area and that structures link to the surface via triangle zones and detachment faults within the incompetent Mesozoic passive-margin sedimentary sequence underlying competent Darai Limestone. Arc-normal oriented structures, dominantly oblique dextral, up-to-the-southeast, are pervasive across a range of scales and are here interpreted to relate at depth to weakened pre-existing basement cross-structures. It is proposed that Palaeozoic basement fabric controlled the structural framework of the basin during Early Mesozoic rifting forming regional scale accommodation zones and related local-scale transfer structures that are now expressed as regional-scale arc-normal lineaments and local-scale arc-normal structures, respectively. Transfer structures, including complexly breached relay ramps, utilise northeast-southwest striking weaknesses associated with the basement fabric, as a mechanism for accommodating displacement along major northwest-southeast striking normal faults. These structures have subsequently been inverted to form arc-normal oriented zones of tear faulting that accommodate laterally variable displacement along inversion faults and connected thrust structures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:巴布亚新几内亚的偏远且荒凉的巴布亚折叠带是地球上最年轻但记录最少的折叠带和逆冲带之一。在大Juha额叶地区,我们进行了超过100 km的地质遍历和相关分析,为当代地质和地球物理数据集带来了显着增加。我们的结构分析提供了在东部穆勒山脉隆起范围内主要反演,脱离和三角带断裂的证据。我们已使用该数据集为大胡哈地区开发了准3D模型,并通过相关横截面揭示了暴露的新生代达赖石灰石受到很好的约束,缩短率极低,仅为12.6-21.4%,但结构最高可升高至7高于区域公里。我们认为,原有裂谷构造的倒转是对该区域演化的主要影响,并且构造通过达能石灰岩下面无能的中生界被动边缘沉积层序内的三角带和脱离断层连接到地表。弧线法向结构,主要是右上角,直到东南,在各种尺度上无处不在,在这里被解释为与深度较弱的已有地下室横断面相关。提出在中生代早期裂谷过程中,古生代基底织物控制了盆地的结构框架,形成了区域尺度的适应带和相关的局部尺度转移结构,这些结构现在被表示为区域尺度的弧线法线和局部尺度的弧线法线。 , 分别。传递结构(包括复杂破坏的中继坡道)利用与基底构造相关的东西向撞击弱点,作为适应西北主要东南向撞击正常断层的位移的机制。这些结构随后被倒转以形成撕裂断层的弧线法向取向区域,这些区域适应了沿倒转断层和相连的逆冲构造的横向变化位移。 (C)2017 Elsevier Ltd.保留所有权利。

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