Modelling coastal notch morphology and developmental history in the Mediterranean

GeoResJ Pub Date : 2016-12-01 DOI:10.1016/j.grj.2016.09.003
Alan Trenhaile
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引用次数: 12

Abstract

Coastal notches are used as paleo-sea level markers and to determine rates of tectonic uplift. This has been especially important in warm, microtidal seas. Modelling was used in this paper to test the hypothesis, developed in the Mediterranean, that the shape of notch profiles provides insights into changes in relative sea level (RSL) and modes of tectonic activity. Variables in the model included local factors such as the gradient of the initial slope, whether notches collapsed or remained stable, and rock strike, dip, and bed resistance to erosion. The main regional-scale variables included climatically induced changes in erosional efficacy and a variety of uniform and episodic, positive and negative changes in RSL. Model results suggest that attempts to use notch profiles to identify changes in climate and RSL must be accompanied by careful field observation and mineralogical analysis in order to extract the obfuscating effects of local factors. Similar notch profiles can be produced by different combinations of local and regional factors and, based on ambiguous field evidence, differentiating the morphological effect of changes in RSL from the effect of these other factors may continue to be problematic, especially where there has been low tectonic activity or stability.

模拟地中海海岸缺口形态和发展历史
海岸缺口被用作古海平面标志,并用于确定构造隆升速率。这在温暖的微潮海域尤为重要。本文使用模型来验证在地中海发展起来的假设,即缺口轮廓的形状提供了对相对海平面(RSL)变化和构造活动模式的见解。模型中的变量包括局部因素,如初始坡度、缺口是否坍塌或保持稳定、岩石走向、倾角和床层抗侵蚀能力。主要的区域尺度变量包括气候引起的侵蚀效能变化以及各种均匀和偶发性、正性和负性的RSL变化。模式结果表明,利用缺口剖面识别气候和RSL变化的尝试必须伴随着仔细的实地观察和矿物学分析,以便提取当地因素的混淆效应。相似的缺口剖面可以由局部和区域因素的不同组合产生,并且基于模糊的现场证据,区分RSL变化的形态影响与这些其他因素的影响可能仍然存在问题,特别是在构造活动或稳定性较低的地方。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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