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Chiral twisted 'h' molecule in simple shear flow

机译:简单剪切流中的手性扭曲“ h”分子

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摘要

For rigid chiral objects in the low Reynolds number of shear flows, both experimental and theoretical results show that the chiral objects and their enantiomers will migrate in the positive or negative vorticity directions. This phenomenon is widely explored for the possibility of separation of chiral objects in shear flow. Within the simplest twisted "H" molecule model of hydrodynamic interactions of particles, we have calculated the hydrodynamic forces exerted on chiral twisted "H" molecules by shear flows. The chiral parameters that determine their different migration forces in shear flows are identified. The analysis may also be extended to study other complex motions of chiral objects in natural situations and microfluidic cells as well as important chiral-flow interactions, such as the interparticle interactions mediated by fluid flows.
机译:对于低雷诺数剪切流的刚性手性物体,实验和理论结果均表明,手性物体及其对映体将在正或负涡度方向上迁移。对于在剪切流中分离手性物体的可能性,人们广泛探索了这种现象。在粒子的水动力相互作用的最简单的扭曲“ H”分子模型中,我们已经计算了通过剪切流作用在手性扭曲“ H”分子上的流体动力。确定确定其在剪切流中不同迁移力的手性参数。该分析还可以扩展到研究自然情况下手性对象和微流体细胞的其他复杂运动以及重要的手性流相互作用,例如由流体流介导的粒子间相互作用。

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