Department of Physics, The University of Chicago, Chicago, IL 60637, USA.
The John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.
Science. 2017 Aug 4;357(6350):487-491. doi: 10.1126/science.aam6897.
Helicity, a topological measure of the intertwining of vortices in a fluid flow, is a conserved quantity in inviscid fluids but can be dissipated by viscosity in real flows. Despite its relevance across a range of flows, helicity in real fluids remains poorly understood because the entire quantity is challenging to measure. We measured the total helicity of thin-core vortex tubes in water. For helical vortices that are stretched or compressed by a second vortex, we found conservation of total helicity. For an isolated helical vortex, we observed evolution toward and maintenance of a constant helicity state after the dissipation of twist helicity by viscosity. Our results show that helicity can remain constant even in a viscous fluid and provide an improved basis for understanding and manipulating helicity in real flows.
螺旋度是衡量流场中涡旋缠绕程度的拓扑量,在无粘流体中是守恒量,但在真实流动中会被粘性耗散掉。尽管螺旋度在各种流动中都很重要,但由于整个量难以测量,因此对真实流体中的螺旋度仍了解甚少。我们测量了水中薄芯涡管的总螺旋度。对于被第二个涡旋拉伸或压缩的螺旋涡旋,我们发现总螺旋度守恒。对于孤立的螺旋涡旋,我们观察到在粘性耗散扭转螺旋度后,螺旋度朝着一个恒定的螺旋度状态演变并保持该状态。我们的结果表明,即使在粘性流体中,螺旋度也可以保持恒定,为理解和控制真实流动中的螺旋度提供了更好的基础。