论文标题

脉冲流中的非线性流体动力不稳定和湍流

Nonlinear hydrodynamic instability and turbulence in pulsatile flow

论文作者

Xu, Duo, Varshney, Atul, Ma, Xingyu, Song, Baofang, Riedl, Michael, Avila, Marc, Hof, Björn

论文摘要

只要速度中等,脉冲流穿过管状几何形状是层流。尤其还认为这适用于惯性力通常太低而无法维持湍流的心血管流动。另一方面,流动不稳定性和波动的剪切应力负责各种心血管疾病。在这里,我们报告了一种非线性不稳定性机制,用于脉动管道流量,在低流速下引起湍流爆发。发现小而有限的幅度的几何扭曲被发现激发了流动减速过程中由螺旋涡制成的状态。所得的流动模式的大小迅速生长,分解为湍流,并在流动加速时最终恢复到层流。在每个脉动周期中,这种情况会导致剪切应力波动和流动逆转。这种不稳定的条件可能会对血管产生不利影响,并已被证明会促进剪切应力敏感的内皮细胞层的炎症和功能障碍。

Pulsating flows through tubular geometries are laminar provided that velocities are moderate. This in particular is also believed to apply to cardiovascular flows where inertial forces are typically too low to sustain turbulence. On the other hand flow instabilities and fluctuating shear stresses are held responsible for a variety of cardiovascular diseases. Here we report a nonlinear instability mechanism for pulsating pipe flow that gives rise to bursts of turbulence at low flow rates. Geometrical distortions of small, yet finite amplitude are found to excite a state consisting of helical vortices during flow deceleration. The resulting flow pattern grows rapidly in magnitude, breaks down into turbulence, and eventually returns to laminar when the flow accelerates. This scenario causes shear stress fluctuations and flow reversal during each pulsation cycle. Such unsteady conditions can adversely affect blood vessels and have been shown to promote inflammation and dysfunction of the shear stress sensitive endothelial cell layer.

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