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A Numerical Analysis of Non-Newtonian Fluid Flow Through a Valveless Micropump

机译:通过无轨微泵的非牛顿流体流动的数值分析

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The flow behavior and performance parameters of a diffuser-nozzle element of a valveless micropump have been studied for different peak pressures by numerical analysis. Blood, a non-Newtonian fluid material has been taken as the working fluid of which viscosity is modeled by the Carreau Model. A pulsating pressure imposed at the boundary of the element results in a net flow in the diffuser direction due to the dynamic effect. The variation of performance parameters such as net volume flow rate, rectification capability and diffuser efficiency have been observed for quantitative study. Flow behavior and recirculation region have been studied as qualitative study. A 2-D geometry is considered for the numerical analysis and peak pressure has been varied from 5 to 50 kPa for the present study. Net volume flow, rectification capability and diffuser efficiency are found to increase with the increase of peak pressure. Flow separation and recirculation region are found to last for longer period of time with the increase of peak pressure.
机译:通过数值分析研究了不同峰值压力的Virveless Micropump的扩散器喷嘴元件的流动性能和性能参数。血液,非牛顿流体材料已被视为粘度由卡饵模型建模的工作流体。由于动态效果,在元件的边界处施加在元件边界处的脉动压力导致漫射方向上的净流动。已经观察到诸如净体积流速,整流能力和扩散器效率的性能参数的变化进行定量研究。已经研究了流动行为和再循环区域作为定性研究。对于数值分析,2-D几何形状被认为是目前研究的5至50kPa的数值分析和峰值压力。发现净体积流量,整流能力和扩散效率随着峰值压力的增加而增加。发现流动分离和再循环区域以峰值压力的增加持续更长的时间段。

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