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A theoretical model for fluvial channel response time during time-dependent climatic and tectonic forcing and its inverse applications

机译:时变气候和构造强迫过程中河流通道响应时间的理论模型及其反演应用

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摘要

The fluvial response time dictates the duration of fluvial channel adjustment in response to changing climatic and tectonic conditions. However, when these conditions vary continuously, the channel cannot equilibrate and the response time is not well defined. Here I develop an analytical solution to the linear stream power model of fluvial incision that predicts the channel topography as a function of time-dependent climatic and tectonic conditions. From this solution, a general definition of the fluvial response time emerges: the duration over which the tectonic history needs to be known to evaluate channel topography. This new definition is used in linear inversion schemes for inferring climatic or tectonic histories from river long profiles. The analytic solution further reveals that high-frequency climatic oscillations, such as Milankovitch cycles, are not expected to leave significant fingerprints on the long profiles of fluvially incised detachment-limited rivers.
机译:河流响应时间决定了响应气候和构造条件变化的河流通道调整的持续时间。但是,当这些条件连续变化时,通道将无法平衡,响应时间也无法很好地定义。在这里,我为河流切口的线性流功率模型开发了一种解析解决方案,该模型可预测通道地形随时间变化的气候条件和构造条件。通过这种解决方案,可以得出河流响应时间的一般定义:需要知道构造历史的持续时间,以评估通道的地形。此新定义用于线性反演方案中,可从河流长剖面推断气候或构造历史。该分析解决方案进一步揭示,预计在诸如河流流切入受限河道的长剖面上,诸如米兰科维奇循环之类的高频气候振荡不会留下明显的指纹。

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