首页> 外文OA文献 >Fingerprinting stress: stylolite and calcite twinning paleopiezometry revealing the complexity of progressive stress patterns during folding-the case of the Monte Nero anticline in the Apennines, Italy
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Fingerprinting stress: stylolite and calcite twinning paleopiezometry revealing the complexity of progressive stress patterns during folding-the case of the Monte Nero anticline in the Apennines, Italy

机译:指纹压力:缝合线和方解石孪晶古构造,揭示折叠过程中渐进应力模式的复杂性 - 意大利亚平宁山脉monte Nero背斜的情况

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摘要

In this study we show for the first time how quantitative stress estimates can be derived by combining calcite twinning and stylolite roughness stress fingerprinting techniques in a fold-and-thrust belt. First, we present a new method that gives access to stress inversion using tectonic stylolites without access to the stylolite surface and compare results with calcite twin inversion. Second, we use our new approach to present a high-resolution deformation and stress history that affected Meso-Cenozoic limestone strata in the Monte Nero Anticline during its late Miocene-Pliocene growth in the Umbria-Marche Arcuate Ridge (northern Apennines, Italy). In this area an extensive stylolite-joint/vein network developed during layer-parallel shortening (LPS), as well as during and after folding. Stress fingerprinting illustrates how stress in the sedimentary strata did build up prior to folding during LPS. The stress regime oscillated between strike slip and compressional during LPS before ultimately becoming strike slip again during late stage fold tightening. Our case study shows that high-resolution stress fingerprinting is possible and that this novel method can be used to unravel temporal relationships that relate to local variations of regional orogenic stresses. Beyond regional implications, this study validates our approach as a new powerful toolbox to high-resolution stress fingerprinting in basins and orogens combining joint and vein analysis with sedimentary and tectonic stylolite and calcite twin inversion techniques.
机译:在这项研究中,我们首次展示了在褶皱-冲断带中结合方解石孪晶和斜纹石粗糙应力指纹技术,如何可以得出定量应力估算值。首先,我们提出了一种新方法,该方法可使用构造型斜纹岩获得应力反演,而无需进入斜纹岩表面,并将结果与​​方解石孪生反演进行比较。其次,我们使用新方法来呈现高分辨率变形和应力历史,这些历史和历史在Umbria-Marche Arcuate Ridge(意大利北亚平宁山脉)的中新世-上新世晚期发育期间影响了Monte Nero背斜的中新生代石灰岩地层。在该区域中,在平行层缩短(LPS)期间以及折叠过程中和折叠后,形成了一个广泛的斜纹节理/静脉网。应力指纹图谱说明了在LPS折叠之前沉积层中的应力是如何累积的。在LPS期间,应力状态在走滑和压缩之间振荡,然后在后期折叠收紧期间最终再次变为走滑。我们的案例研究表明,高分辨率应力指纹识别是可能的,并且该新方法可用于揭示与区域造山应力的局部变化有关的时间关系。除了对区域的影响外,本研究还验证了我们的方法是一种结合盆地和造山带高分辨率应力指纹图谱的强大新工具箱,该方法结合了联合和静脉分析技术以及沉积和构造性辉石和方解石孪生反演技术。

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