论文标题
相互作用的颗粒系统
Interacting jammed granular systems
论文作者
论文摘要
30多年前,爱德华兹和合着者提出了一个模型来描述一组昂贵的干扰状态的颗粒包装统计。到目前为止,该模型的实验测试仍然很少。我们引入了一个简单的系统,以分析堵塞颗粒集合的统计特性来测试爱德华兹理论。在实验和数值模拟中研究了包装在近二维几何限制中的相同球体。当窃听时,系统会朝基态发展,但是由于不兼容的域结构,它被困。分析计算相对较好地重现了我们的仿真结果,这使我们能够在具有不同属性的两个子系统的耦合系统上测试Edwards理论。我们发现,由于应力的限制,如果将关节系统视为单个系统,则只能由爱德华兹理论描述。结果显示了反直觉的效果,就像耦合系统中的顺序参数的变化与压实性变化所期望的相反。
More than 30 years ago Edwards and co-authors proposed a model to describe the statistics of granular packings by an ensemble of equiprobable jammed states. Experimental tests of this model remained scarce so far. We introduce a simple system to analyze statistical properties of jammed granular ensembles to test Edwards theory. Identical spheres packed in a nearly two-dimensional geometrical confinement were studied in experiments and numerical simulations. When tapped, the system evolves towards a ground state, but due to incompatible domain structures it gets trapped. Analytical calculations reproduce relatively well our simulation results, which allows us to test Edwards theory on a coupled system of two subsystems with different properties. We find that the joint system can only be described by the Edwards theory if considered as a single system due to the constraints in the stresses. The results show counterintuitive effects as in the coupled system the change in the order parameter is opposite to what is expected from the change in the compactivity.