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:通过无序推力,支撑和形态内流变学对比开发楔内构造混杂岩。意大利亚平宁山脉Massico Ridge

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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:山。 Massico ridge(意大利亚平宁山脉中南部)的特点是类似于一个150 m厚的构造混杂岩,它位于由层状砂岩,石灰岩,泥灰岩和黏土组成的层状低层,由碎屑岩层组成的Tortonian-Messinian下部非均质碎屑演替层的底部。沉积物和孤立的橄榄石,沉积在中新生代石灰岩上方。地质绘图和结构分析,结合伊利石-蒙脱石古热指示剂和方解石方解石脉和光滑纤维的U-Pb定年,使我们得以阐明(1)山的构造演化。 Massico ridge和(2)在亚平宁增生楔形演化的框架内楔内构造混杂岩的发育。结果表明,在中晚新生代石灰岩在Tortonian时代(7.01.6Ma)逆冲和折叠之后,Messinian-早新世早期序贯逆冲(5.13.7Ma)并列,类似于3,300 m厚的盘状冲断片。高于托尔森-下墨西尼碎屑演替。在无序推挤过程中,由于与潜在的中生代-新生代石灰岩的流变对比和机械支撑,弱碎屑沉积物的底部起到了弯折作用的作用。沿碎屑演替基底的非均质形变被粘土岩和泥灰岩的韧性压力溶液,脆性的地层破裂,有效的橄榄石的碎裂/脉理和初生叶脉(即砂岩和石灰岩地层)所适应。构造混杂。在上新世晚期(最小年龄2.90.5Ma)之后,在受压阶段之后是伸展构造。我们得出的结论是,乱序冲断,支撑和构造内流变对比可能是楔内构造混杂岩发展的基本因素。

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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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