Tholen Katharina, Pähtz Thomas, Yizhaq Hezi, Katra Itzhak, Kroy Klaus
Institute for Theoretical Physics, Leipzig University, Leipzig, Germany.
Institute of Port, Coastal and Offshore Engineering, Ocean College, Zhejiang University, 866 Yu Hang Tang Road, 310058, Hangzhou, China.
Nat Commun. 2022 Jan 10;13(1):162. doi: 10.1038/s41467-021-26985-3.
Aeolian sand transport is a major process shaping landscapes on Earth and on diverse celestial bodies. Conditions favoring bimodal sand transport, with fine-grain saltation driving coarse-grain reptation, give rise to the evolution of megaripples with a characteristic bimodal sand composition. Here, we derive a unified phase diagram for this special aeolian process and the ensuing nonequilibrium megaripple morphodynamics by means of a conceptually simple quantitative model, grounded in the grain-scale physics. We establish a well-preserved quantitative signature of bimodal aeolian transport in the otherwise highly variable grain size distributions, namely, the log-scale width (Krumbein phi scale) of their coarse-grain peaks. A comprehensive collection of terrestrial and extraterrestrial data, covering a wide range of geographical sources and environmental conditions, supports the accuracy and robustness of this unexpected theoretical finding. It could help to resolve ambiguities in the classification of terrestrial and extraterrestrial sedimentary bedforms.
风成沙输运是塑造地球及各种天体地貌的一个主要过程。有利于双峰沙输运的条件,即细颗粒跃移驱动粗颗粒蠕移,导致了具有特征双峰沙成分的巨型沙波的演化。在此,我们通过一个基于颗粒尺度物理学的概念上简单的定量模型,推导出了这一特殊风成过程及随之而来的非平衡巨型沙波形态动力学的统一相图。我们在原本高度可变的粒度分布中建立了双峰风成输运的一个保存完好的定量特征,即其粗颗粒峰值的对数尺度宽度(克伦宾菲尺度)。涵盖广泛地理来源和环境条件的陆地和外星数据的综合收集,支持了这一意外理论发现的准确性和稳健性。它有助于解决陆地和外星沉积地貌分类中的模糊性问题。