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Metachronal beating of cilia under influence of Hartmann layer and heat transfer

机译:在Hartmann层和传热的影响下纤毛的历时跳动

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摘要

The propulsion system of cilia motion is investigated considering a viscous fluid model. The problem of the two-dimensional fluid motion in a symmetric channel with ciliated walls is considered. The features of ciliary structures are resolved by the supremacy of viscosity effects over inertial control by the long-wavelength and low-Reynolds-number approximation. Exact solutions for the longitudinal pressure gradient, temperature and velocities are obtained. The pressure gradient and volume flow rate for different values of the flow parameters are also predicted. The flow possessions for the viscous fluid are solved as a function of the cilia and metachronal wave velocity.
机译:考虑粘性流体模型研究了纤毛运动的推进系统。考虑了具有纤毛壁的对称通道中的二维流体运动问题。通过长波长和低雷诺数近似,粘度效应优于惯性控制可解决睫状结构的特征。获得了纵向压力梯度,温度和速度的精确解。还可以预测不同流量参数值的压力梯度和体积流量。求解粘性流体的流量占有量,作为纤毛和同步波速度的函数。

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