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AVALANCHE DYNAMICS IN A PILE OF RICE

机译:一堆米的雪崩动力学

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THE idea of self-organized criticality(1) (SOC) is commonly illustrated conceptually with avalanches in a pile of sand grains. The grains are dropped onto a pile one by one, and the pile ultimately reaches a stationary 'critical' state in which its slope fluctuates about a constant angle of repose, with each new grain being capable of inducing an avalanche on any of the relevant size scales. Some numerical models of sand-pile dynamics do show SOC1-8, but the behaviour of real sand piles remains ambiguous(9-18). Here we describe experiments on a granular system--a pile of rice-in which the dynamics exhibit self-organized critical behaviour in one case (for grains with a large aspect ratio) but not in another (for less elongated grains). These results show that SOC is not as 'universal' and insensitive to the details of a system as was initially supposed(1), but that instead its occurrence depends on the detailed mechanism of energy dissipation. [References: 20]
机译:自组织临界性(1)(SOC)的概念通常在概念上用一堆沙粒中的雪崩来说明。将谷物逐一滴落到堆上,然后堆最终达到静止的“临界”状态,在该状态下,其坡度围绕恒定的休止角波动,每种新谷物都能够引发任何相关大小的雪崩。秤。沙堆动力学的一些数值模型确实显示了SOC1-8,但实际沙堆的行为仍然模棱两可(9-18)。在这里,我们描述了在一个颗粒系统上进行的实验-一堆米饭-在这种情况下,动力学表现为一种情况(对于长径比大的谷物)表现出自组织的临界行为,而在另一种情况下(对于伸长率较小的谷物)则没有。这些结果表明,SOC并不像最初假定的那样“通用”且对系统的细节不敏感(1),而是它的出现取决于能量耗散的详细机制。 [参考:20]

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