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Slip Effects on Mixed Convective Peristaltic Transport of Copper-Water Nanofluid in an Inclined Channel

机译:倾斜通道中铜-水纳米流体混合对流蠕动蠕动的滑移效应

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摘要

Peristaltic transport of copper-water nanofluid in an inclined channel is reported in the presence of mixed convection. Both velocity and thermal slip conditions are considered. Mathematical modelling has been carried out using the long wavelength and low Reynolds number approximations. Resulting coupled system of equations is solved numerically. Quantities of interest are analyzed through graphs. Numerical values of heat transfer rate at the wall for different parameters are obtained and examined. Results showed that addition of copper nanoparticles reduces the pressure gradient, axial velocity at the center of channel, trapping and temperature. Velocity slip parameter has a decreasing effect on the velocity near the center of channel. Temperature of nanofluid increases with increase in the Grashoff number and channel inclination angle. It is further concluded that the heat transfer rate at the wall increases considerably in the presence of copper nanoparticles.
机译:据报道,在存在对流的情况下,铜-水纳米流体在倾斜通道中的蠕动传输。同时考虑速度和热滑移条件。使用长波长和低雷诺数近似值进行了数学建模。所得的耦合方程组通过数值求解。通过图表分析感兴趣的数量。获得并检查了不同参数下壁的传热率数值。结果表明,添加铜纳米颗粒降低了压力梯度,通道中心的轴向速度,捕集和温度。速度滑动参数对通道中心附近的速度具有减小的影响。纳米流体的温度随着Grashoff数和通道倾斜角的增加而增加。进一步得出结论,在存在铜纳米颗粒的情况下,壁处的传热速率大大提高。

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