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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Large along-strike variations in the onset of Subandean exhumation: Implications for Central Andean orogenic growth
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Large along-strike variations in the onset of Subandean exhumation: Implications for Central Andean orogenic growth

机译:Subandean尸体发掘过程中大的沿袭变化:对安第斯中部造山运动的影响

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Plate tectonics drives mountain building in general, but the space-time pattern and style of deformation is influenced by how climate, geodynamics, and basement structure modify the orogenic wedge. Growth of the Subandean thrust belt, which lies at the boundary between the arid, high-elevation Central Andean Plateau and its humid, low-elevation eastern foreland, figures prominently into debates of orogenic wedge evolution. We integrate new apatite and zircon (U-Th)/He thermochronometer data with previously published apatite fission-track data from samples collected along four Subandean structural cross-sections in Bolivia between 15 degrees and 20 degrees S. We interpret cooling ages vs. structural depth to indicate the onset of Subandean exhumation and signify the forward propagation of deformation. We find that Subandean growth is diachronous south (11 +/- 3 Ma) vs. north (6 +/- 2 Ma) of the Bolivian orocline and that Subandean exhumation magnitudes vary by more than a factor of two. Similar north-south contrasts are present in foreland deposition, hinterland erosion, and paleoclimate; these observations both corroborate diachronous orogenic growth and illuminate potential propagation mechanisms. Of particular interest is an abrupt shift to cooler, more arid conditions in the Altiplano hinterland that is diachronous in southern Bolivia (16-13 Ma) vs. northern Bolivia (10-7 Ma) and precedes the timing of Subandean propagation in each region. Others have interpreted the paleoclimate shift to reflect either rapid surface uplift due to lithosphere removal or an abrupt change in climate dynamics once orographic threshold elevations were exceeded. These mechanisms are not mutually exclusive and both would drive forward propagation of the orogenic wedge by augmenting the hinterland backstop, either through surface uplift or spatially variable erosion. In summary, we suggest that diachronous Subandean exhumation was driven by piecemeal hinterland uplift, orography, and the outward propagation of deformation. Published by Elsevier B.V.
机译:板块构造总体上驱动着山区的建设,但是时空模式和变形方式受气候,地球动力学和基底结构如何改变造山楔的影响。在干旱,高海拔的中部安第斯高原与湿润,低海拔的东部前陆之间的边界处,苏巴第斯冲断带的生长成为造山楔演化的争论的重要部分。我们将新的磷灰石和锆石(U-Th)/ He温度计时仪数据与先前发布的磷灰石裂变径迹数据集成在一起,这些数据是沿着玻利维亚15度和20度之间的四个Subandean结构截面收集的样品得出的。我们解释了冷却年龄与结构深度表示苏巴底斯掘尸的发生,并表示变形的正向传播。我们发现,Subandean的生长与玻利维亚的Orocline的南部(11 +/- 3 Ma)相对于北部(6 +/- 2 Ma)是逆时针的,Subandean的挖掘活动幅度相差两个以上。前陆沉积,腹地侵蚀和古气候也存在类似的南北反差。这些发现既证实了造山运动的历时性,也阐明了潜在的传播机制。特别令人感兴趣的是,高原高原腹地突然转向凉爽,干旱的条件,玻利维亚南部(16-13 Ma)与玻利维亚北部(10-7 Ma)是历时性的,并且在每个区域的苏南传播时间之前。其他人则解释了古气候的变化,以反映由于岩石圈移走而引起的快速地表隆升,或者反映了一旦超过地形阈值的升高,气候动力学的突然变化。这些机制不是相互排斥的,并且两者都将通过增加地表隆起或空间变化的侵蚀,通过增加内陆的支持来推动造山楔的向前传播。总之,我们认为,次大陆性采掘活动是由零散的腹地隆起,地形和变形的向外传播驱动的。由Elsevier B.V.发布

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