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Non-linear Oberbeck-electroconvection in a poorly conducting fluid through a vertical channel in the presence of an electric field

机译:在电场作用下通过垂直通道的导电性较差的流体中的非线性Oberbeck电对流

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摘要

Non-linear Oberbeck-electroconvection (OBEC) in a poorly electrically conducting fluid through a vertical channel, when the walls are held at different temperatures with temperature difference perpendicular to gravity, is studied using the modified Navier stokes equation in the presence of both induced and an applied electric field. Both analytical and numerical solutions for the non-linear coupled equations governing the motion are obtained and found that analytical solutions agree well with numerical solutions for values of the buoyancy parameter N < 1. It is shown that OBEC can be controlled by maintaining the temperature difference either in the same direction or opposing the potential difference with a suitable value of electric number W. The effect of W on velocity, temperature, rate of heat transfer, skin friction and mass flow rate are computed and the results are depicted graphically. We found that analytical results agree well with numerical results for small values of N. We also found that an increase in W accelerates the flow and hence increases linearly the skin friction and mass flow rate.
机译:当将壁保持在不同温度且垂直于重力的温度差不同时,通过修正的Navier stokes方程研究了通过垂直通道的导电性差的流体在垂直通道中的非线性奥贝克电对流(OBEC)。外加电场。获得了控制运动的非线性耦合方程的解析解和数值解,并发现解析解与浮力参数N <1的数值解非常吻合。结果表明,可以通过保持温度差来控制OBEC。可以在相同的方向上或以适当的电数值W反向于电势差。计算W对速度,温度,热传递速率,皮肤摩擦和质量流率的影响,并以图形方式描绘结果。我们发现对于N较小的值,分析结果与数值结果非常吻合。我们还发现,W的增加会加速流动,从而使皮肤摩擦和质量流率线性增加。

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