Ma Nailin, Sun Yanjun, Jian Yongjun
School of Mathematical Science, Inner Mongolia University, Hohhot 010021, China.
School of Statistics and Mathematics, Inner Mongolia University of Finance and Economics, Hohhot 010070, China.
Micromachines (Basel). 2023 Aug 16;14(8):1617. doi: 10.3390/mi14081617.
This study investigates the effect of small random transverse wall roughness on electromagnetohydrodynamic (EMHD) flow is in a microchannel, employing the perturbation method based upon stationary random function theory. An exact solution of a random corrugation function , which is a measure of the flow rate deviated from the case without the roughness of two plates, is obtained by integrating the spectral density. After the sinusoidal, triangular, rectangular, and sawtooth functions that satisfy the Dirichlet condition are expanded into the Fourier sine series, the spectral density of the sine function is used to represent the corrugation function. Interestingly, for sinusoidal roughness, the final expression of the corrugation function is in good agreement with our previous work. Results show that no matter the shape of the wall roughness, the flow rate always decreases due to the existence of wall corrugation. Variations of the corrugation function and the flow rate strongly depend on fluid wavenumber and Hartmann number . Finally, the flow resistance is found to become small, and the flow rate increases with roughness that is in phase ( = 0) compared with the one that is out of phase ( = ).
本研究基于平稳随机函数理论,采用摄动法研究了微通道中小的随机横向壁面粗糙度对电磁流体动力学(EMHD)流动的影响。通过对谱密度进行积分,得到了一个随机波纹函数的精确解,该函数衡量了与两平板无粗糙度情况下相比的流量偏差。在将满足狄利克雷条件的正弦、三角、矩形和锯齿函数展开为傅里叶正弦级数后,用正弦函数的谱密度来表示波纹函数。有趣的是,对于正弦粗糙度,波纹函数的最终表达式与我们之前的工作非常吻合。结果表明,无论壁面粗糙度的形状如何,由于壁面波纹的存在,流量总是会降低。波纹函数和流量的变化强烈依赖于流体波数和哈特曼数。最后发现,与异相( = )的粗糙度相比,同相( = 0)的粗糙度会使流动阻力变小,流量增加。