Heat Absorption Effect on Free Convection Flow Past a Vertical Porous Pipe with Mass Transfer

Altine, M.M., Omokhuale, E., Onwubuya, I. O., Disu, A.B.
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Abstract

This study investigates heat absorption on free convection flow past a vertical porous pipe with mass transfer. The governing equations are the continuity, momentum, energy and diffusion equations. The equations in dimensionless form were transformed into ordinary differential equations (ODEs) and solved analytically using perturbation method. Approximate solutions for the velocity, temperature and concentration were determined. Results are presented graphically showing the effects of various parameters on the fluid flow. It is observed that the velocity becomes higher when thermal Grashof number and sustentions paramètre are increased. Also, increase in magnetic parameter, Schmidt number and Prandtl number lead to fall in the velocity of the fluid. The temperature of the fluid rises also with increase in heat generation but reduces for increased values of Prandtl number. Consequently, the concentration boundary layer decreases with increasing values of Schmidt number. Furthermore, increase in suction/injection has a retarding and accelerating effect on the velocity, temperature and concentration of the fluid respectively.
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垂直多孔管传质过程中自由对流的吸热效应
本文研究了垂直多孔管自由对流传热的传质特性。控制方程是连续性方程、动量方程、能量方程和扩散方程。将无量纲形式的方程转化为常微分方程,并用摄动法解析求解。确定了速度、温度和浓度的近似解。结果以图形形式显示了各种参数对流体流动的影响。结果表明,随着热格拉什夫数和供给参数的增加,速度增大。磁参数、施密特数和普朗特数的增大导致流体的速度下降。流体的温度也随着产热的增加而升高,但随着普朗特数的增加而降低。因此,浓度边界层随着施密特数的增大而减小。此外,吸力比的增加对流体的速度、温度和浓度分别有减慢和加速作用。
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