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Lithologic Effects on Landscape Response to Base Level Changes: A Modeling Study in the Context of the Eastern Jura Mountains, Switzerland

机译:对基础水平景观响应的岩性作用变化:瑞士东部汝拉山脉背景下的建模研究

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Landscape evolution is a product of the forces that drive geomorphic processes (e.g., tectonics and climate) and the resistance to those processes. The underlying lithology and structural setting in many landscapes set the resistance to erosion. This study uses a modified version of the Channel-Hillslope Integrated Landscape Development (CHILD) landscape evolution model to determine the effect of a spatially and temporally changing erodibility in a terrain with a complex base level history. Specifically, our focus is to quantify how the effects of variable lithology influence transient base level signals. We set up a series of numerical landscape evolution models with increasing levels of complexity based on the lithologic variability and base level history of the Jura Mountains of northern Switzerland. The models are consistent with lithology (and therewith erodibility) playing an important role in the transient evolution of the landscape. The results show that the erosion rate history at a location depends on the rock uplift and base level history, the range of erodibilities of the different lithologies, and the history of the surface geology downstream from the analyzed location. Near the model boundary, the history of erosion is dominated by the base level history. The transient wave of incision, however, is quite variable in the different model runs and depends on the geometric structure of lithology used. It is thus important to constrain the spatiotemporal erodibility patterns downstream of any given point of interest to understand the evolution of a landscape subject to variable base level in a quantitative framework.
机译:景观演变是推动地貌过程(例如,构造和气候)和对这些过程的抵抗力的力的产物。许多景观中的底层岩性和结构环境使耐腐蚀性抵抗。本研究采用了通道 - 山坡集成景观开发(儿童)景观演变模型的修改版本,以确定具有复杂基本历史的地形中的空间和时间变化的易蚀的效果。具体地,我们的重点是量化可变岩性的影响如何影响瞬态基础级信号。我们建立了一系列数值景观演变模型,基于瑞士北部汝拉山脉的岩性变异性和基本级历史,增加了复杂程度。该模型与岩性(以及其易蚀)一致地在景观的瞬态演变中发挥着重要作用。结果表明,地点的侵蚀率历史取决于岩石隆起和基础级历史,不同岩性的侵蚀范围,以及分析位置下游的表面地质的历史。在模型边界附近,侵蚀史如基层历史为主。然而,切口的瞬态波在不同的模型中是相当变量的运行,并且取决于所使用的岩性的几何结构。因此,重要的是限制在任何特定的兴趣点下游的时空蚀刻图案,以了解在定量框架中对可变基础水平进行景观的演变。

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