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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 >Unsteady evolution of the Bolivian Subandean thrust belt: The role of enhanced erosion and clastic wedge progradation
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Unsteady evolution of the Bolivian Subandean thrust belt: The role of enhanced erosion and clastic wedge progradation

机译:玻利维亚苏南冲断带的不稳定演化:增强的侵蚀作用和碎屑楔形增生作用

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摘要

The Subandean fold and thrust belt of Bolivia constitutes the easternmost part of the Andean orogen that reflects thin-skinned shortening and eastward propagation of the Andean deformation front. The exact interplay of tectonics, climate, and erosion in the deposition of up to 7.5 km of late Cenozoic strata exposed in the Subandes remains unclear. To better constrain these relationships, we use four W-E industry seismic reflection profiles, eight new zircon U-Pb ages from Mio-Pliocene sedimentary strata, and cross-section balancing to evaluate the rates of thrust propagation, shortening, and deposition pinch-out migration. Eastward thrusting arrived in the Subandean belt at similar to 12.4 +/- 0.5 Ma and propagated rapidly toward the foreland unit approximately 6 Ma. This was followed by out-of-sequence deformation from ca. 4 to 2.1 Ma and by renewed eastward propagation thereafter. Our results show that the thrust-front propagation- and deposition pinch-out migration rates mimic the sediment accumulation rate. The rates of deposition pinchout migration and thrust propagation increased three- and two fold, respectively (8 mm/a; 3.3 mm/a) at 86 Ma. The three-fold increase in deposition pinch-out migration rate at this time is an indication of enhanced erosional efficiency in the hinterland, probably coupled with flexural rebound of the basin. Following the pulse of pinch-out migration, the Subandean belt witnessed rapid similar to 80 km eastward propagation of thrusting to the La Vertiente structure at 6 Ma. As there is no evidence for this event of thrust front migration being linked to an increase in shortening rate, the enhanced frontal accretion suggests a shift to supercritical wedge taper conditions. We propose that the supercritical state was due to a drop in basal strength, caused by sediment loading and pore fluid overpressure. This scenario implies that climate-controlled variation in erosional efficiency was the driver of late Miocene mass redistribution, which induced flexural rebound of the Subandean thrust belt, spreading of a large clastic wedge across the basin, and subsequent thrust-front propagation.
机译:玻利维亚的Subandean褶皱和逆冲带构成了Andean造山带的最东端,反映了Andean变形锋的薄皮缩短和向东传播。目前尚不清楚构造,气候和侵蚀在暴露于Subandes的长达7.5 km的新生代晚期地层中的确切相互作用。为了更好地约束这些关系,我们使用了四个WE工业地震反射剖面,来自八方上新世沉积地层的八个新的锆石U-Pb年龄以及横截面平衡来评估推力传播,缩短和沉积夹移的速率。向东的推力以大约12.4 +/- 0.5 Ma的速度到达Subandean带,并迅速向前陆单元传播约6 Ma。随后是大约ca的乱序变形。 4至2.1 Ma,此后又重新向东传播。我们的研究结果表明,逆冲前传播和沉积收缩活动速率模拟了沉积物的累积速率。在86 Ma时,沉积结节迁移和推力传播的速率分别增加了三倍和两倍(8 mm / a; 3.3 mm / a)。此时沉积物migration散运移速率增加了三倍,这表明腹地的侵蚀效率增强,可能与盆地的弯曲回弹有关。随着the散迁移的脉动,Subandean带目睹了类似于6 Ma的向东向La Vertiente构造的逆冲向80 km的快速传播。由于没有证据表明这种推力前移的事件与缩短率的增加有关,因此增加的额叶吸积表明转向了超临界楔锥条件。我们认为,超临界状态是由于沉积物负荷和孔隙流体超压引起的基础强度下降所致。这种情况表明,气候控制的侵蚀效率变化是中新世后期质量重新分布的驱动力,这导致了苏北冲断带的挠曲回弹,大碎屑楔在盆地上的扩散以及随后的冲断前传播。

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