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Numerical Simulations of Colliding Particle Distribution in Flow Chamber

机译:流动室内碰撞颗粒分布的数值模拟

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The adhesion of flowing cells to the vascular surface occurs in many physiological and pathological processes.The Parallel flow chamber (PFC) system is usually used to investigate this transport-dependent process.Understanding of the cells locomotion near the bottom,cells collision with the wall and the spatial distribution of the colliding particles in the chamber bottom should have useful in modeling of the cells adhesion and analyzing of the PFC biological experimental data.Here,with ADINA-F finite element analysis software,the collision events of small spherical particles pouring into inlet to PFC are numerically simulated for different wall shear stresses,0.25,0.5,1,2,3 and 4dyn/cm2.And,by tracing the trajectory of the particles from the inlet to the bottom of flow chamber,the spatial distribution of the colliding particles in the PFC was predicted.The results show that,the collision events between the particles pouring into flow chamber and the flow chamber bottom decrease as increasing shear stress,the collision fraction of the particles is less than 12.5% under different shear conditions,and the front bench positions of the colliding particles are dependent on the initial position being released from inlet.The aim of our numerical simulation lies in give one some enlighten in the design of the flow chamber and the data analysis of flow chamber experiments.
机译:在许多生理和病理过程中都会发生流动细胞与血管表面的粘附。通常使用平行流室(PFC)系统来研究这种依赖运输的过程。了解细胞在底部附近的运动,细胞与壁的碰撞以及腔室底部碰撞粒子的空间分布应有助于细胞粘附的建模和PFC生物学实验数据的分析。在这里,使用ADINA-F有限元分析软件,小球形粒子的碰撞事件涌入对PFC的入口进行了数值模拟,以模拟不同壁剪切应力(0.25、0.5、1,2、3和4dyn / cm2)。并且,通过跟踪从入口到流动室底部的颗粒轨迹,可知PFC入口的空间分布。预测了PFC中发生碰撞的颗粒。结果表明,流入流动室和流动室底部的颗粒之间的碰撞事件随着倾角的增加而减小。增大剪切应力,在不同剪切条件下,颗粒的碰撞分数小于12.5%,碰撞颗粒的前台位置取决于从入口释放的初始位置。我们的数值模拟的目的在于给出一个有人对流动室的设计和流动室实验的数据分析有启发。

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