基于对流边界条件的水基纳米流体MHD三维流动的非线性辐射传热

B. Mahanthesh , B.J. Gireesha , Rama Subba Reddy Gorla
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引用次数: 114

摘要

在非线性热辐射、Soret效应和Dufour效应存在的情况下,对纳米流体由拉伸片引起的流体磁性三维边界层流动进行了理论研究。研究考虑了三种不同类型的水基纳米流体,其中含有铜、氧化铝和二氧化钛。采用三维非线性相似变换将控制边界层方程转化为一组相似方程。采用龙格-库塔-费贝格四五阶方法结合射击格式对所得方程进行了数值求解。此外,在一些极限情况下,将所得结果与先前发表的一些结果进行了比较,发现结果很一致。该问题受磁性参数、辐射参数、温度比参数、普朗特数、施密特数、索雷特数、杜福尔数和比奥数、拉伸比参数、功率指数和纳米颗粒体积分数等11个物理参数的制约。借助于图表,全面讨论了这些参数对各种流动分布的影响。研究发现,纳米颗粒的加入可以改变流体的性质,提高传热系统的导热性,从而提高传热系统的效率。
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Nonlinear radiative heat transfer in MHD three-dimensional flow of water based nanofluid over a non-linearly stretching sheet with convective boundary condition

A theoretical investigation of the hydromagnetic three-dimensional boundary layer flow of nanofluid due to stretching sheet has been carried out in the presence of a non-linear thermal radiation, Soret and Dufour effects. Three different types of water-based nanofluids containing copper, aluminium oxide and titanium dioxide are taken into consideration. The governing boundary layer equations are transformed into a set of similarity equations using three dimensional non-linear type similarity transformations. The resultant equations are numerically solved by employing Runge–Kutta–Fehlberg fourth–fifth order method along with shooting scheme. Further, under some limiting case obtained results are compared with some previously published results and found in good agreement. The problem is governed eleven physical parameters such as magnetic parameter, radiation parameter, temperature ratio parameter, Prandtl, Schmidt, Soret, Dufour and Biot numbers, stretching ratio parameter, power index and nanoparticles volume fraction parameter. The effect of these parameters on various flow distributions is comprehensively discussed with the help of graphs and tables. It is found that, properties of the fluid can be changed by varying the concentration of nanoparticles and the nanoparticles enhance the thermal conductivity which results improvement in efficiency of heat transfer systems.

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Editorial Board Nonlinear radiative heat transfer in MHD three-dimensional flow of water based nanofluid over a non-linearly stretching sheet with convective boundary condition Elastic interaction of a screw dislocation with a double-coated cylinder Similarity solution of 3D Casson nanofluid flow over a stretching sheet with convective boundary conditions Homotopy analysis solution of MHD slip flow past an exponentially stretching inclined sheet with Soret-Dufour effects
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