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Numerical modelling of Quaternary terrace staircase formation in the Ebro foreland basin, southern Pyrenees, NE Iberia

机译:伊比利亚南部比利牛斯省埃布罗前陆盆地第四纪阶地阶梯形成的数值模拟

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The southern foreland basin of the Pyrenees (Ebro basin) is an exorheic drainage basin since Late Miocene times. Remnants of an early exorheic Ebro drainage system are not preserved, but morphology provides evidence for the Pliocene-Quaternary drainage development. The incision history of the Ebro system is denoted by (i) extensive, low gradient pedimentation surfaces which are associated with the denudation of the southern Pyrenean piedmont around the Pliocene-Quaternary transition and (ii) deeply entrenched Quaternary river valleys. Presumably since the Middle Pleistocene fluvial incision intensified involving the formation of extensive terrace staircase in the Ebro basin. Terrace exposure dating in major Ebro tributary rivers indicates climate-triggered terrace formation in response to glacial-interglacial climate and glacier fluctuations in the Pyrenean headwaters. The overall (semi) parallel longitudinal terrace profiles argue for progressive base level lowering for the whole Ebro drainage network. The landscape evolution model, TISC, is used to evaluate climatic, tectonic and base level scenarios for terrace staircase formation in the Ebro drainage system. Model simulations are compared with morpho-climatic, tectonic and chronologic data. Results show that climatic fluctuations cause terrace formation, but the incision magnitudes and convergent terrace profiles predicted by this climate model scenario are not consistent with the (semi) parallel terraces in the Ebro basin. A model including previous (late Pliocene) uplift of the lower Ebro basin results in rapid base-level lowering and erosion along the drainage network, small late stage incision magnitudes and terrace convergence, which are not in agreement with observations. Instead, continuous Quaternary uplift of both the Pyrenees and the Ebro foreland basin triggers (semi) parallel terrace staircase formation in southern Pyrenean tributary rivers in consistency with the observed longitudinal terrace profiles and Middle-Late Pleistocene incision magnitudes. Forward model simulations indicate that the present Ebro drainage system is actively incising, providing further evidence for uplift.
机译:比利牛斯山脉的南部前陆盆地(埃布罗盆地)是自中新世晚期以来的溢流盆地。早期的溢流性埃布罗引流系统的残留物未保留,但形态为上新世-第四纪引流的发展提供了证据。埃布罗(Ebro)系统的切割历史由(i)广泛的,低梯度的沉积表面表示,这些表面与上新世-第四纪过渡附近的比利牛斯山前南部的剥蚀有关,以及(ii)根深蒂固的第四纪河谷。大概是由于中更新世河床切口加剧,涉及在埃布罗盆地形成了宽大的阶地阶梯。埃布罗主要支流河流的阶地暴露日期表明,响应比利牛斯河源头的冰川间气候和冰川波动,气候触发了阶地形成。整体(半)平行的纵向阶地剖面表明,整个埃布罗排水网络的基础水位逐渐降低。景观演化模型TISC用于评估埃布罗排水系统中梯阶楼梯形成的气候,构造和基础水平方案。将模型模拟与形态气候,构造和年代数据进行比较。结果表明,气候波动会导致阶地形成,但是这种气候模式情景所预测的切口幅度和会聚阶地剖面与埃布罗盆地的(半)平行阶地不一致。包括先前埃布罗盆地下游(上新世晚期)隆升的模型,导致沿排水网络的基础层迅速降低和侵蚀,后期切口幅度较小和阶地收敛,这与观测结果不一致。取而代之的是,比利牛斯山脉和埃布罗前陆盆地的连续第四纪隆升触发了比利牛斯山脉支流南部(半)平行阶地阶梯形成,这与观测到的纵向阶地剖面和中晚更新世切入量一致。向前的模型模拟表明,当前的Ebro排水系统正在积极切割,为进一步抬升提供了证据。

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