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On the inference of denudation rates from cooling ages of minerals

机译:从矿物的冷却年龄推断剥蚀率

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摘要

The inference of denudation rats from the temperature-time histories of rocks is not straightforward, because the geothermal gradient evolves with time, as denudation advects heat towards the land surface. We show that the curvature in the temperature-time path recorded by an exhumed rock is strongly dependent upon denudation rate, and upon the temperature of the rock before denudation began, but only weakly dependent upon the initial geothermal gradient, the original depth of burial of the rock, or the duration of the denudation. For the case in which denudation rate is constant, a systematic search of parameter space yields robust estimates of denudation rate, and of the initial temperature. If there is prior knowledge of the initial geothermal gradient, the original depth of burial of the rock, or the duration of the denudation, this may be used further to limit the acceptable ranges of the other two parameters. Application of this procedure to two geological examples suggests that denudation rates in the Nanga Parbat massif are lower and less variable than previously suggested, and that the inference, drawn from accelerated cooling rates, of accelerating denudation in the Andes is incorrect.
机译:从岩石的温度-时间历史推断剥蚀大鼠不是直接的,因为随着剥蚀将热量向地面加热,地热梯度会随着时间而变化。我们发现,由掘出的岩石记录的温度-时间路径中的曲率在很大程度上取决于剥蚀率,以及剥蚀开始之前岩石的温度,但仅弱取决于初始地热梯度,原始埋藏深度。岩石或剥蚀的持续时间。对于剥蚀速率恒定的情况,对参数空间的系统搜索会得出对剥蚀速率和初始温度的可靠估计。如果事先了解初始地热梯度,岩石的原始埋藏深度或剥蚀持续时间,则可以将其进一步用于限制其他两个参数的可接受范围。将此程序应用于两个地质实例表明,Nanga Parbat断层中的剥蚀率比以前建议的要低且变化较小,并且从加速冷却速率得出的安第斯山脉加速剥蚀的推论是不正确的。

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