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Numerical simulation of blood flow crossing the aortic arch

机译:穿过主动脉弓的血流的数值模拟

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Aorta provides as the passageway for blood in supplying nutrients to human body is the vital organ for human. Whenever, aorta has pathologic change might be life threatening emergency due to massive blood loss. The most common encountering conditions are aortic aneurysm rupture and acute aortic dissection and the most lesions sites are located near the aortic arch. The etiology for these pathologic changes is closely related to the intra-aortic high-speed, high-pressure pulsatile blood flow. Study the blood flow and the hemodynamic change might help us to understand the pathologic change and further prevent its happening. Therefore, we tried to use the computational fluid dynamics methodology to understand the flow dynamics in the aorta crossing the aortic arch. The axial velocity profiles and secondary flow vectors were plotted at two time points during systolic phase. The primary axial flow velocity skewed from medial side of aorta to lateral side after pass through aortic arch and the secondary flow developed as counter-rotating vortices in the middle plane.
机译:主动脉为人体提供营养,是血液的通道。无论何时,由于大量失血,主动脉发生病理变化可能会危及生命。最常见的情况是主动脉瘤破裂和急性主动脉夹层,并且大多数病变部位位于主动脉弓附近。这些病理改变的病因与主动脉内高速,高压脉动血流密切相关。研究血流和血液动力学变化可能有助于我们了解病理变化并进一步防止其发生。因此,我们尝试使用计算流体动力学方法来了解主动脉穿过主动脉弓的血流动力学。在收缩期的两个时间点绘制了轴向速度分布图和二次流矢量。一次轴向流速在穿过主动脉弓后从主动脉内侧偏向外侧,二次轴向流速在中间平面上发展为反向旋转涡流。

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