首页> 外文期刊>International Journal of Modern Physics C (IJMPC) >EFFECTS OF THERMAL CREEP ON COOLING OF MICROFLOWS IN SHORT MICROCHANNELS WITH CONSTANT WALL TEMPERATURE
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EFFECTS OF THERMAL CREEP ON COOLING OF MICROFLOWS IN SHORT MICROCHANNELS WITH CONSTANT WALL TEMPERATURE

机译:热蠕变对恒定壁温短微通道中微流冷却的影响

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摘要

Fluid flow and heat transfer in the entrance region of rectangular microchannels of various aspect ratios are numerically investigated in the slip-flow regime with particular attention to thermal creep effects. Uniform inlet velocity and temperature profiles are prescribed in microchannels with constant wall temperature. An adiabatic section is also employed at the inlet of the channel in order to prevent unrealistically large axial temperature gradients due to the prescribed uniform inlet temperature as well as upstream diffusion associated with low Reynolds number flows. A control-volume technique is used to solve the Navier–Stokes and energy equations which are accompanied with appropriate velocity slip and temperature jump boundary conditions at the walls. Despite the constant wall temperature, axial and peripheral temperature gradients form in the gas layer adjacent to the wall due to temperature jump. The simultaneous effects of velocity slip, temperature jump and thermal creep on theflow and thermal patterns along with the key flow parameters are examined in detail for a wide range of cross-sectional aspect ratios, and Knudsen and Reynolds numbers. Present results indicate that thermal creep effects influence the flow field and the temperature distribution significantly in the early section of the channel.
机译:在滑流状态下,数值研究了不同纵横比的矩形微通道入口区域中的流体流动和传热,并特别注意了热蠕变效应。在恒定壁温的微通道中规定了均匀的入口速度和温度曲线。为了防止由于规定的均匀入口温度以及与低雷诺数流相关的上游扩散而引起的不实际的大轴向温度梯度,在通道的入口处还采用了绝热段。控制量技术用于求解Navier-Stokes和能量方程,并在壁上伴随适当的速度滑移和温度跃变边界条件。尽管壁温恒定,但由于温度跳跃,在与壁相邻的气体层中仍会形成轴向和周围温度梯度。速度滑移,温度跃变和热蠕变对流动和热模式的同时影响以及关键的流动参数,针对各种横截面纵横比以及Knudsen和Reynolds数进行了详细研究。目前的结果表明,热蠕变效应会在通道的早期部分显着影响流场和温度分布。

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