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Computational investigations on the hemodynamic performance of a new swirl generator in bifurcated arteries

机译:新型旋流发生器在分叉动脉中的血流动力学性能的计算研究

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Hemodynamic behaviour of blood in the bifurcated arteries are closely related to the development of cardiovascular disease. The secondary flows generated at the bifurcation zone promotes the deposition of atherogenic particles on the outer walls. The present study aims at suppressing the development of atherosclerosis plaque by inducing helical flow structure in the arterial passage. To realize this objective a novel swirl generator (stent like structure with an internal groove) has been developed to induce helicity in the bifurcated passage. The functional requirement of the swirl generator is to minimize the relative residence time (RRT) of the fluid layer near the endothelial wall without generating any additional pressure drop. Different configurations of the swirl generator have been tested computationally using large eddy simulation (LES) model. It is observed that the induced helical flow redistributes the kinetic energy from the centre to the periphery. A single rib swirl flow generator proximal to the stent treated passage can generate sufficient helicity to bring down the RRT by 36% without generating any additional pressure drop. The swirl flow adds azimuthal instability which increase vortex formations in the passage. The induced helical flow in the domain provokes more linked vortices, which may act as self-cleaning mechanism to the arterial wall.
机译:分支动脉中血液的血流动力学行为与心血管疾病的发展密切相关。在分叉区产生的二次流促进了动脉粥样硬化颗粒在外壁上的沉积。本研究旨在通过在动脉通道中诱导螺旋流动结构来抑制动脉粥样硬化斑块的发展。为了实现该目的,已经开发了新颖的涡流发生器(具有内部凹槽的类似支架的结构)以在分叉通道中引起螺旋。旋流发生器的功能要求是使内皮层附近的流体层的相对停留时间(RRT)最小化,而不会产生任何额外的压降。涡流发生器的不同配置已使用大型涡流仿真(LES)模型进行了计算测试。可以观察到,诱导的螺旋流将动能从中心重新分布到外围。靠近支架处理通道的单个肋状涡流发生器可以产生足够的螺旋度,以使RRT降低36%,而不会产生任何额外的压降。旋流增加了方位不稳定性,从而增加了通道中的涡流形成。在该区域中引起的螺旋流会引起更多的链接涡,这可能是动脉壁的自清洁机制。

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