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首页> 外文期刊>The European physical journal, E. Soft matter >Exploring the physics of sand drawings: The role of craters, furrows and piles
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Exploring the physics of sand drawings: The role of craters, furrows and piles

机译:探索沙绘的物理学:陨石坑,沟和桩的作用

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Few years ago an article addressing the physics behind abstract paintings was published by Herczynski et al. (Phys. Today 64, 31 (2011) issue No. 6). The authors aimed to understand how artists like Jackson Pollock manipulated paints to create pieces of art where the theory of fluid dynamics had a clear and perceivable role. Scaling laws were found to explain the plasticity observed in the artists's traces that we admire in worldwide museums. Because sand drawings are not only wonderful artistic expressions but also intangible cultural heritages of humanity, we wonder if they could be analyzed in a similar fashion. Our goal is to explore the physics behind the formation of such drawings. In order to do so, we carry out experimental studies on the formation of sand cavities, furrows and piles, which individually or interconnected, give rise to artistic patterns. Moreover, in order to manipulate such three observables, some control parameters are needed. Altogether, they conform into simple exponential and power laws that collapse when a scaling is performed.
机译:几年前,一篇关于抽象绘画背后的物理的文章由Herczynski等人发表。 (PHOME。今天64,31(2011)第6期)。作者旨在了解杰克逊波洛克这样的艺术家如何操纵涂料,以创造流体动力学理论具有清晰可感知的作用。发现缩放法律解释了我们在全球博物馆欣赏的艺术家追踪中观察到的可塑性。因为沙画不仅是美妙的艺术表达,而且是人类的无形文化遗产,我们想知道它们是否可以以类似的方式分析。我们的目标是探讨这些图纸的形成背后的物理。为此,我们对砂腔,犁穴和桩的形成进行实验研究,它们单独或互连,引起艺术模式。此外,为了操纵这样的三个可观察,需要一些控制参数。完全,它们符合在执行缩放时崩溃的简单指数和动力定律。

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