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Anomalous Transport of Elongated Particles in Oscillatory Vortical Flows
Shiyuan Hu1,2, Xiuyuan Yang1, Nan Luo3,4
1Beihang University, School of Physics, Beijing 100191 China.
None:
We investigate the transport dynamics of elongated particles in cellular vortical flows that undergo spatial oscillations over time. Experimental flow visualizations reveal mixed flow fields with chaotic and elliptic regions coexisting. Surprisingly, the particle transport rate does not increase monotonically with particle length, even though longer particles are expected to explore neighboring vortices more easily. Numerical simulations in a much larger system produce similar transport anomalies, characterized by subdiffusion due to frequent longtime trapping in vortices at certain lengths but normal diffusion at others. At moderate oscillation frequencies, these longtime trapping events occur within the chaotic region; at high frequencies, they occur in the elliptic regions, but only for particles whose lengths match these regions. In the latter case, subdiffusion is robust against random noise. Our results reveal new mechanisms for controlling particle random walks and dispersal in fluid flows.
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