Paleotopographic reconstruction on the basis of low-temperature thermochronological thermal history modelling
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
http://link.springer.com/content/pdf/10.1007/s12583-013-0357-7.pdf
Reference10 articles.
1. Braun, J., 2005. Quantitative Constraints on the Rate of Landform Evolution Derived from Low-Temperature Thermochronology. Reviews in Mineralogy and Geochemistry, 58: 351–374
2. Braun, J., 2003. Pecube: A New Finite Element Code to Solve the Heat Transport Equation in Three Dimensions in the Earth’s Crust Including the Effects of a Time-Varying, Finite Amplitude Surface Topography. Computers and Geoscience, 29: 787–794
3. Braun, J., 2002. Estimating Exhumation Rate and Relief Evolution by Spectral Analysis of Age-Elevation Datasets. Terra Nova, 14: 210–214
4. Braun, J., Robert, X., 2005. Constraints on the Rate of Post-Orogenic Erosional Decay from Thermochronological Data: Example from the Dabie Shan, China. Earth Surf. Proc. Land., 30: 1203–1225
5. Brown, R. W., 1991. Backstacking Apatite Fission-Track “Stratigraphy”: A Method for Resolving the Erosional and Isostatic Rebound Components of Tectonic Uplift Histories. Geology, 19: 74–77
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1. Numerical approach for thermal history modelling in multi-episodic rifting basins;Journal of Earth Science;2014-06
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