古气候学
地质学
沉积物
沉积岩
沉积作用
新生代
古生物学
地质记录
流域
地球系统科学
地球科学
比例(比率)
自然地理学
构造盆地
气候变化
海洋学
地理
地图学
作者
Tristan Salles,Laurent Husson,Patrice Rey,Claire Mallard,Sabin Zahirovic,Beatriz Hadler Boggiani,Nicolas Coltice,Maëlis Arnould
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-03-03
卷期号:379 (6635): 918-923
被引量:6
标识
DOI:10.1126/science.add2541
摘要
Our capability to reconstruct past landscapes and the processes that shape them underpins our understanding of paleo-Earth. We take advantage of a global-scale landscape evolution model assimilating paleoelevation and paleoclimate reconstructions over the past 100 million years. This model provides continuous quantifications of metrics critical to the understanding of the Earth system, from global physiography to sediment flux and stratigraphic architectures. We reappraise the role played by surface processes in controlling sediment delivery to the oceans and find stable sedimentation rates throughout the Cenozoic with distinct phases of sediment transfer from terrestrial to marine basins. Our simulation provides a tool for identifying inconsistencies in previous interpretations of the geological record as preserved in sedimentary strata, and in available paleoelevation and paleoclimatic reconstructions.
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