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首页> 外文期刊>International journal of nonlinear sciences and numerical simulation >Chemical Reaction Effects in Maxwell Fluid Flow Over Permeable Surface: Dual Solutions
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Chemical Reaction Effects in Maxwell Fluid Flow Over Permeable Surface: Dual Solutions

机译:麦克斯韦流体在可渗透表面上的化学反应效应:双重解决方案

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This communication addresses the chemical reaction effects in two-dimensional boundary layer flow of an upper convected Maxwell (UCM) fluid over a shrinking surface. Mathematical modeling has been performed and the adequate transformations have been utilized for the conversion of partial differential system into coupled nonlinear ordinary differential system. Numerical techniques namely shooting method combined with Runge-Kutta fourth order and Newton's method are utilized for the construction of the solutions for the velocity and the concentration fields. Dual nature of solutions for both velocity and concentration field is displayed and discussed. It is noted that the range for suction is larger for the non-Newtonian fluid when compared with the Newtonian fluid. It is also observed that two solutions exist for different values of Deborah number.
机译:这种交流解决了在收缩表面上方的对流麦克斯韦(UCM)流体在二维边界层流动中的化学反应效应。已经进行了数学建模,并且已经利用适当的变换将偏微分系统转换为耦合非线性常微分系统。利用数值技术,即与Runge-Kutta四阶相结合的射击法和牛顿法,构造了速度场和浓度场的解。显示和讨论了速度场和浓度场的解的双重性质。注意,与牛顿流体相比,非牛顿流体的吸力范围更大。还观察到,对于德博拉数的不同值,存在两种解决方案。

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