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空间颗粒物质的理想状态

Ideal states of granular matter in space
课程网址: http://videolectures.net/kolokviji_sperl_granular_matter_in_space...  
主讲教师: Matthias Sperl
开课单位: 德国航空航天中心 (DLR)
开课时间: 2019-04-23
课程语种: 英语
中文简介:
在体积上仅次于水,颗粒状物质是工业中最常用的材料或材料状态。尽管它在工程中很重要,但许多颗粒物质的物理基础现在才被研究。在统计物理学中描述粒状物质的一个主要障碍是失衡动力学的强烈影响:由于能量损失,两粒子碰撞已经破坏了时间反演对称性,并使粒状系统失衡,因此是一个挑战在理论和实验上都一样。此外,不同密度的颗粒物质极易受重力影响。因此,实验需要并且可以从微重力实验中受益:在地面上,粒状气体沉积迅速,搅拌的粒状流体具有强烈的各向异性,而粒状填料表现出较大的压力梯度。对于所有这三个州,在抛物线飞行、落塔、探空火箭和国际空间站等多个平台上的实验表明,他们可以在微重力下获得独特而理想的整体。粒状气体可以均匀搅拌,粒状流体在各向同性条件下观察,粒状固体不受梯度监测。为了表征这些理想状态,可以应用各种诊断方法:视频成像、光散射、X 射线照相、应力双折射和声音传输。简要说明这些实验的结果如何为颗粒物质的行为提供有价值的见解,并有助于更深入地理解
课程简介: Second only to water in volume, granular matter is the most frequently used material or material state in industry. Despite its importance in engineering, many physical foundations of granular matter are only now being investigated. A major obstacle to describe granular matter within statistical physics is the strong influence of out-of-equilibrium dynamics: Already the two-particle collision breaks time-reversal symmetry due to energy loss and renders granular systems out-of-equilibrium and thus a challenge in theory and experiment alike. In addition, granular matter at different densities is strongly susceptible to the influence of gravity. Hence, experiments require and can benefit from experiments in microgravity: On ground, granular gases sediment quickly, agitated granular fluids are strongly anisotropic, and granular packings exhibit large gradients in pressure. For all three of those states, experiments on several platforms such as parabolic flight, drop tower, sounding rocket and International Space Station demonstrate access to unique and ideal ensembles under microgravity. Granular gases can be agitated homogeneously, granular fluids observed under isotropic conditions, and granular solids monitored free of gradients. In order to characterize those ideal states a variety of diagnostics can be applied: video imaging, light-scattering, X-ray radiography, stress birefringence, and sound transmission. A synopsis shall be given how the results from these experiments provide valuable insights into the behavior of granular matter and contribute to a deeper understanding
关 键 词: 空间粒子; 微重力实验; 粒子气体
课程来源: 视频讲座网
数据采集: 2022-03-22:hqh
最后编审: 2022-03-22:hqh
阅读次数: 36