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首页> 外文期刊>Tectonics >Development of an Intrawedge Tectonic Melange by Out-of-Sequence Thrusting, Buttressing, and Intraformational Rheological Contrast, Mt. Massico Ridge, Apennines, Italy
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Development of an Intrawedge Tectonic Melange by Out-of-Sequence Thrusting, Buttressing, and Intraformational Rheological Contrast, Mt. Massico Ridge, Apennines, Italy

机译:通过序列推动,支撑和内部流变对比,Mt的开发开发内辅导构造混合。 Massico Ridge,Apennines,意大利

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摘要

The Mt. Massico ridge (central southern Apennines, Italy) is characterized by a similar to 150-m-thick tectonic melange located at the base of a Tortonian-lower Messinian heterogeneous clastic succession consisting of layered sandstones, limestones, marls, and claystones with intercalated mass wasting deposits and isolated olistoliths, which deposited above Meso-Cenozoic limestones. Geological mapping and structural analyses, integrated with illite-smectite paleothermal indicators and U-Pb dating of syntectonic calcite veins and slickenfibers, allowed us to unravel (1) the tectonic evolution of the Mt. Massico ridge and (2) the development of the intrawedge tectonic melange in the framework of the Apennine accretionary wedge evolution. Results show that after thrusting and folding of Meso-Cenozoic limestones during late Tortonian times (7.01.6Ma), late Messinian-early Pliocene out-of-sequence thrusting (5.13.7Ma) juxtaposed similar to 3,300-m-thick, imbricate thrust sheets above the Tortonian-lower Messinian clastic succession. During out-of-sequence thrusting, the base of the weak clastic deposits acted as a decollement horizon due to the rheological contrast and mechanical buttress with the underlying competent Mesozoic-Cenozoic limestones. Heterogeneous deformation along the base of the clastic succession was accommodated by ductile pressure solution of claystones and marls, by brittle stratal disruption and fracturing/veining of competent olistoliths and primary foliation (i.e., sandstones and limestones strata), thus leading to the development of a tectonic melange. The compressional phase was followed by extensional tectonics after the late Pliocene (minimum age 2.90.5Ma). We conclude that out-of-sequence thrusting, buttressing, and intraformational rheological contrast can be fundamental factors for the development of intrawedge tectonic melange.
机译:Mt. Massico Ridge(意大利南部亚平宁山脉)的特点是类似于150米厚的构造Melange,位于Tortonian-Lower Messinian异质碎片连续的基座,包括分层的砂岩,石灰岩,玛尔兹和具有插入大规模浪费的粘土存放和孤立的Olistoliths,其沉积在中生型石灰岩上方。地质测绘和结构分析,与透明石苍白的苍白指标和U-PB统一的术语方解石静脉和同性恋者进行了聚类,使我们能够解开(1)Mt的构造演变。 Massico Ridge和(2)在亚平宁的楔形进化框架框架内开发了内辅导构造混感。结果表明,在后期Tortonian时代(7.01.6mA)期间,在后期叉膜石灰岩(7.01.6mA),晚消息期 - 早期的序列推动(5.13.7mA)并置与3,300米厚,玻璃套装的旋转夸张的推力板相似高于Tortonian-Lower Messinian Clast Clastion。在次序式推动期间,由于具有下面的态度的中生代 - 新生代石灰石的流变造影和机械支撑,弱碎片沉积物的基部作用为DeDollement Horizo​​ n。通过粘土和Marls的韧性压力溶液,通过脆性划分性破坏和压裂/脉冲/血管粒子和初级叶(即砂岩和石灰岩地层),通过脆性延伸溶液的异质变形。从而导致一个发育构造melange。继晚期后的压缩阶段之后是延伸构造(最低年龄为2.90.5mA)。我们得出结论,序列的推动,阻碍和内部流变造影可能是临床构造构造构造的基本因素。

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  • 来源
    《Tectonics》 |2019年第4期|1223-1249|共27页
  • 作者单位

    Sapienza Univ Roma Dipartimento Sci Terra Rome Italy|Univ Bourgogne Franche Comte Chronoenvironm UMR 6249 Besancon France;

    Sapienza Univ Roma Dipartimento Sci Terra Rome Italy;

    Sapienza Univ Roma CNR Dipartimento Sci Terra Rome Italy;

    Sapienza Univ Roma Dipartimento Sci Terra Rome Italy|Sapienza Univ Roma CNR Dipartimento Sci Terra Rome Italy;

    Univ Roma Tre Dipartimento Sci Rome Italy;

    Goethe Univ Frankfurt Inst Geowissensch Frankfurt Germany;

    Goethe Univ Frankfurt Inst Geowissensch Frankfurt Germany;

    Univ Roma Tre Dipartimento Sci Rome Italy;

    Univ Bologna Dipartimento Sci Biol Geol & Ambientali BiGeA Bologna Italy;

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