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首页> 外文期刊>Journal of biomechanical engineering. >Pulsatile blood flow effects on temperature distribution and heat transfer in rigid vessels.
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Pulsatile blood flow effects on temperature distribution and heat transfer in rigid vessels.

机译:脉动血流对刚性血管中的温度分布和热传递产生影响。

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The effect of blood velocity pulsations on bioheat transfer is studied. A simple model of a straight rigid blood vessel with unsteady periodic flow is considered. A numerical solution that considers the fully coupled Navier-Stokes and energy equations is used for the simulations. The influence of the pulsation rate on the temperature distribution and energy transport is studied for four typical vessel sizes: aorta, large arteries, terminal arterial branches, and arterioles. The results show that: the pulsating axial velocity produces a pulsating temperature distribution; reversal of flow occurs in the aorta and in large vessels, which produces significant time variation in the temperature profile. Change of the pulsation rate yields a change of the energy transport between the vessel wall and fluid for the large vessels. For the thermally important terminal arteries (0.04-1 mm), velocity pulsations have a small influence on temperature distribution and on the energy transport out of the vessels (8 percent for the Womersley number corresponding to a normal heart rate). Given that there is a small difference between the time-averaged unsteady heat flux due to a pulsating blood velocity and an assumed nonpulsating blood velocity, it is reasonable to assume a nonpulsating blood velocity for the purposes of estimating bioheat transfer.
机译:研究了血流速度脉动对生物热传递的影响。考虑具有不稳定的周期性流动的笔直的刚性血管的简单模型。模拟中使用考虑了完全耦合的Navier-Stokes和能量方程的数值解。研究了四种典型血管尺寸:主动脉,大动脉,末端动脉分支和小动脉的脉动速率对温度分布和能量传输的影响。结果表明:脉动轴向速度产生脉动温度分布。流量逆转发生在主动脉和大血管中,这会在温度曲线中产生明显的时间变化。脉动速率的变化产生了在大型容器的容器壁和流体之间的能量传输的改变。对于重要的重要末端动脉(0.04-1毫米),速度脉动对温度分布和能量从血管中传输的影响很小(沃默斯利数的8%与正常心率相对应)。假定由于脉动血速引起的时间平均不稳定热通量与假定的非脉动血流速度之间存在很小的差异,出于估算生物热传递的目的而假定非脉动血流速度是合理的。

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