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Knot polynomials as new tool for turbulence research



主   办:力学系与湍流重点实验室
报告人:Prof. RENZO L. RICCA
时   间:4月2日(周四)下午15:00-16:00
地   点:澳门太阳娱乐网站官网1号楼210会议室
主持人:佘振苏 教授


报告内容摘要


In recent decades there has been overwhelming evidence that vorticity tends to get concentrated in coherent structures, such as vortex filaments and tubes (the “sinews of turbulence”), in both classical and quantum fluids. In the case of vortex tangles, structural complexity methods have proven to be useful to investigate and establish new relations between energy, helicity and complexity [1]. Indeed, this approach can be pursued further by introducing knot polynomials. By using a suitable transformation in terms of helicity, it has been recently shown [2] that the standard Jones polynomial of knot theory can be interpreted as a new invariant of topological fluid mechanics. By briefly reviewing this work, we show how to compute this invariant for some simple, but non-trivial topologies. Then, by considering the standard decomposition of the helicity of a vortex filament in terms of writhe and twist, we focus on geometric aspects of vortex reconnection, a key feature in real vortex dynamics, and present a recent result [3] on the conservation of writhe helicity under reconnection. For dissipative systems, this means that any deviation from helicity conservation is entirely due to twist, inserted or deleted locally at the reconnection site. This result has important implications for helicity and energy considerations. We conclude the talk by showing how a combination of these results may lead to the development of a novel approach to investigate fundamental aspects in turbulence research.

报告人简介


Department of Mathematics & Applications, U. Milano-Bicocca, ITALY E-mail: renzo.ricca@unimib.it

URL: http://www.matapp.unimib.it/~ricca