首页> 外文期刊>Chemical Engineering Communications >HEAT TRANSFER IN MHD VISCOELASTIC FLUID FLOW ON STRETCHING SHEET WITH HEAT SOURCE/SINK, VISCOUS DISSIPATION, STRESS WORK, AND RADIATION FOR THE CASE OF LARGE PRANDTL NUMBER
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HEAT TRANSFER IN MHD VISCOELASTIC FLUID FLOW ON STRETCHING SHEET WITH HEAT SOURCE/SINK, VISCOUS DISSIPATION, STRESS WORK, AND RADIATION FOR THE CASE OF LARGE PRANDTL NUMBER

机译:大PRANDTL数的情况下,带热源/缩孔,粘性耗散,应力作用和辐射的拉伸板中MHD粘弹性流体中的传热

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An analysis is carried out to study the magnetohydrodynamic boundary layer flow behavior and heat transfer characteristics of a viscoelastic fluid flow over a stretching sheet with radiation and for the case of large Prandtl numbers. The basic boundary layer equations of momentum and heat transfer, which are nonlinear partial differential equations, are converted into nonlinear ordinary differential equations by means of similarity transformation. The resulting nonlinear ordinary differential equations of momentum are solved exactly. Similarly, the energy equation is transformed to a confluent hypergeometric differential equation using a new variable and Rosseland approximation for radiation. The analytic solutions for temperature profile and heat transfer characteristics are obtained in terms of Kummer's function, and their asymptotic limits for large Prandtl numbers are also obtained. The effects of magnetic field, viscoelastic parameter, viscous dissipation, heat generation/absorption, work done due to deformation, and radiation on flow and heat transfer characteristics are discussed through several graphs. To assess the validity and accuracy of the present work, heat transfer results were compared to those of previously published work of Nataraja et al. (197723. Nataraja , H. R. , Sarma , M. S. , and Rao , B. N. ( 1977 ). On the solution of the energy equation for large Prandtl number in second order fluid flow over a stretching sheet , Z. Angew. Math. Phys. , 48 , 987 - 993 .[CrossRef]View all references). This comparison shows excellent agreement between the results.View full textDownload full textKeywordsHeat generation/absorption, MHD, Radiation, Stretching sheet, Viscoelastic fluidRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00986440801907300
机译:进行分析以研究具有辐射的情况下(对于大Prandtl数)在拉伸片上的粘弹性流体流的磁流体动力学边界层流动行为和传热特性。动量和传热的基本边界层方程是非线性偏微分方程,通过相似变换转化为非线性常微分方程。精确地解决了由此产生的非线性动量常微分方程。类似地,使用新变量和辐射的Rosseland近似,将能量方程转换为合流超几何微分方程。根据库默函数获得了温度分布和传热特性的解析解,并且还获得了其大Prandtl数的渐近极限。通过几幅图讨论了磁场,粘弹性参数,粘滞耗散,热量产生/吸收,由于变形而完成的功以及辐射对流动和传热特性的影响。为了评估当前工作的有效性和准确性,将传热结果与Nataraja等人先前发表的工作进行了比较。 (197723. Nataraja,HR,Sarma,MS和Rao,BN(1977)。关于在拉伸板上二阶流体流动中大Prandtl数的能量方程的解,Z。Angew。Math。Phys。,48 ,987-993。[CrossRef]查看所有参考)。这种比较显示了结果之间的极佳一致性。 ,delicious,linkedin,facebook,stumbleupon,digg,google,more“,发布编号:” ra-4dff56cd6bb1830b“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00986440801907300

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