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Impact of Activation Energy and Temperature-Dependent Heat Source/Sink on Maxwell–Sutterby Fluid
Mathematical Problems in Engineering ( IF 1.430 ) Pub Date : 2020-08-04 , DOI: 10.1155/2020/5251804
T. Sajid 1 , S. Tanveer 2 , Z. Sabir 3 , J. L. G. Guirao 4
Affiliation  

The present article aims to investigate the behaviour of Maxwell–Sutterby fluid past an inclined stretching sheet accompanied with variable thermal conductivity, exponential heat source/sink, magneto-hydrodynamics (MHD), and activation energy. By utilizing the compatible similarity transformations, the nondimensionless PDEs are converted into dimensionless ODEs and further these ODEs are tackled with the help of the bvp4c numerical technique. To check the legitimacy of upcoming results and reliability of the applied bvp4c numerical scheme, a comparison with existing literature and nonlinear shooting method is made. The numerical outcomes delivered here show that the temperature profile escalates due to an augmentation in the heat sink parameter and moreover mass fraction field escalates on account of an improvement in the activation energy parameter.

中文翻译:

活化能和温度相关的热源/散热器对麦克斯韦-萨特比流体的影响

本文旨在研究通过倾斜拉伸片的麦克斯韦-萨特比流体的行为,并伴随可变的热导率,指数热源/汇,磁流体动力学(MHD)和活化能。通过使用兼容的相似性转换,将无量纲的PDE转换为无量纲的ODE,并借助bvp4c数值技术进一步解决这些ODE。为了检验即将到来的结果的合法性和所应用的bvp4c数值格式的可靠性,与现有文献和非线性射击方法进行了比较。
更新日期:2020-08-05
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