Xu Yin
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Coupling inertial, viscoelastic, and enhanced secondary flow in a composite microchannel: achieving high-precision multi-sized particle 3D central co-focusing
Abstract Microfluidic particle focusing is essential for diverse biomedical applications. However, conventional inertial focusing techniques are limited by particle size dependency, hindering effective 3D central co-focusing of particles with varying sizes. In this study, we introduced a novel microfluidic method based on an inertial-viscoelastic-secondary flow synergistic effect (INVEST) within a composite microchannel (CMC), enabling high-efficiency 3D co-focusing of multi-sized particles.
Superconvergence Analysis of Spectral Volume Methods for Two‐Dimensional Diffusion Equations
1 Introduction The spectral volume (SV) method is a class of high order Godunov-type finite volume method [1], which has been under development for several decades and is considered to be the current effective numerical methods to solve the hyperbolic conservation laws (see, e.g., [2-4]).
Mechanochemical coupling regulates defect dynamics in active nematics
Get full text access Log in, subscribe or purchase for full access. References 1. Ramaswamy, S. The Mechanics and Statistics of Active Matter Annu. Rev. Condens. Matter Phys. 2010; 1:323-345 2. Marchetti, M.C. ∙ Joanny, J.F. ... Hydrodynamics of soft active matter Rev. Mod. Phys. 2013; 85:1143-1189 3. Ramaswamy, S. Active matter J. Stat. Mech. 2017; 2017, 054002 4. Lavi, I. ∙ Alert, R. ... Nonlinear Spontaneous Flow Instability in Active Nematics Phys. Rev. Lett. 2025; 134, 238301 5. Doostmohammadi, A. ∙ Adamer, M.F. ...
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