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Natural Erosion of Sandstone as Shape Optimisation

机译:优化形状的砂岩自然侵蚀

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摘要

Natural arches, pillars and other exotic sandstone formations have always been attracting attention for their unusual shapes and amazing mechanical balance that leave a strong impression of intelligent design rather than the result of a stochastic process. It has been recently demonstrated that these shapes could have been the result of the negative feedback between stress and erosion that originates in fundamental laws of friction between the rock’s constituent particles. Here we present a deeper analysis of this idea and bridge it with the approaches utilized in shape and topology optimisation. It appears that the processes of natural erosion, driven by stochastic surface forces and Mohr-Coulomb law of dry friction, can be viewed within the framework of local optimisation for minimum elastic strain energy. Our hypothesis is confirmed by numerical simulations of the erosion using the topological-shape optimisation model. Our work contributes to a better understanding of stochastic erosion and feasible landscape formations that could be found on Earth and beyond.
机译:天然拱门,支柱和其他奇特的砂岩地层一直以其不寻常的形状和惊人的机械平衡而引起人们的关注,这给人以智能化设计的强烈印象,而不是随机过程的结果。最近已经证明,这些形状可能是应力与侵蚀之间负反馈的结果,而负反馈源自岩石组成颗粒之间的基本摩擦定律。在这里,我们对这种想法进行了更深入的分析,并将其与形状和拓扑优化中使用的方法联系起来。似乎可以在最小弹性应变能的局部优化框架内观察由随机表面力和干摩擦的莫尔-库仑定律驱动的自然侵蚀过程。我们的假设通过使用拓扑形状优化模型的侵蚀数值模拟得到了证实。我们的工作有助于更好地了解在地球及其他地区可能发现的随机侵蚀和可行的景观形成。

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