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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Hydrodynamic properties of squirmer swimming in power-law fluid near a wall
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Hydrodynamic properties of squirmer swimming in power-law fluid near a wall

机译:墙上靠近墙体液体液体的水灭的流体动力学特性

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Hydrodynamic properties of squirmer swimming in power-law fluid near a wall considering the interaction between squirmer and wall are numerically studied with an immersed boundary-lattice Boltzmann method. The power-law index, Reynolds number, initial orientation angle of squirmer, and initial distance of squirmer from the wall are all taken into account to investigate the swimming characteristics for pusher ( β ??0) (three kinds of swimmer types) near the no-slip boundary. Four new kinds of swimming modes are found. Results show that, for the pushers and pullers, the wall displays an increasing attraction with increasing power-law index n , which differs from the neutral squirmer who always departs from the wall after the first collision with the wall. Both the initial orientation angle and initial distance from the wall only affect the moving situations rather than the moving modes of the squirmers. However, the squirmers depart from the wall as the Reynolds number increases and chaotic orbits appear for some squirmers at Re ?=?5. Several typical flow fields are analyzed and the power consumption and torque for different kinds of flows are also studied. It is found that, as the absolute value of β increases, the power consumption generally increases in shear-thinning ( n ?=?0.4), Newtonian ( n ?=?1), and shear-thickening ( n ?=?1.6) fluids. Moreover, the pushers ( β ??0) expend almost the same power if the absolute value of β remains the same. In addition, the power consumption of the squirmers is highly dependent on the power-law index n .
机译:考虑抗碎屑与壁之间的相互作用的壁靠近墙壁靠近墙壁的鱿鱼游泳的水力学特性在数量上用浸没边界晶格Boltzmann方法进行了数量研究。据考虑,从墙上的雷诺数,咒语的初始取向角和壁的初始取向角以及墙壁的初始距离,以研究推动器的游泳特性(β?0),中性杀死(β?=? 0)和拉拔器(β?> 0)(三种游泳运动员类型)附近无滑边界。找到了四种新的游泳模式。结果表明,对于推动器和拉拔器,墙壁随着越来越多的幂律指数n显示出越来越多的吸引力,这与中立的死官不同,它们与墙壁的第一次碰撞后总是从墙壁脱离的中性杀伤。初始取向角和距墙的初始距离都仅影响移动情况而不是抗杀虫的移动模式。然而,由于雷诺数的增加和混乱的轨道出现在RE?=?5的某些咒语中出现混乱轨道,蠕动从墙上出发。分析了几种典型的流场,还研究了不同种类流动的功耗和扭矩。结果发现,随着β的绝对值的增加,功耗通常在剪切变薄中增加(n?= 0.4),牛顿(n?=?1),剪切增厚(n?=?1.6)液体。此外,如果β的绝对值保持不变,则推动器(β≤≤0)和拉拔器(β?> 0)消耗几乎相同的功率。此外,Dirmers的功耗高度依赖于幂律指数n。

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