...
首页> 外文期刊>Chemical Science International Journal >Possessions of Chemical Reaction on MHDHeat and Mass Transfer Nanofluid Flow on aContinuously Moving Surface
【24h】

Possessions of Chemical Reaction on MHDHeat and Mass Transfer Nanofluid Flow on aContinuously Moving Surface

机译:在连续运动的表面上具有MHD热和传质纳米流体流动的化​​学反应

获取原文
           

摘要

A two-dimensional steady flow of an electrically conducting, viscous incompressible nanofluid past a continuously moving surface is considered in the presence of uniform transverse magnetic field with chemical reaction. A mathematical governing model has developed for the momentum, temperature and concentration boundary layer. Similarity transformations using to modify the boundary layer equations. Whereas this prominent transformations are used to transform the principal nonlinear boundary layer equations for momentum, thermal energy and concentration to a system of nonlinear ordinary coupled differential equations with fitting boundary conditions. The coupled differential equations are numerically simulated using the famous Nactsheim-Swigert shooting technique together with Runge-Kutta six order iteration schemes. Pertinent results with respect to embedded parameters are displayed graphically for the velocity, temperature and concentration profiles and were discussed quantitatively. Skin-friction, Heat transfer rate (Nusselt number) and mass transfer rate (Sherwood number) are illustrated for the various important parameters entering into the problem separately are discussed with the help of graphs. Finally for the accuracy of the present results a comparison with previously published research work are accomplished and proven an excellent agreement.
机译:在存在具有化学反应的均匀横向磁场的情况下,可以考虑通过连续运动的表面的导电粘性不可压缩纳米流体的二维稳定流。建立了用于动量,温度和浓度边界层的数学控制模型。相似变换用于修改边界层方程。而这种突出的变换被用来将动量,热能和浓度的主要非线性边界层方程式转换为具有合适边界条件的非线性常耦合微分方程组。使用著名的Nactsheim-Swigert射击技术以及Runge-Kutta六阶迭代方案对耦合的微分方程进行数值模拟。关于嵌入参数的相关结果以图形方式显示了速度,温度和浓度曲线,并进行了定量讨论。通过图表说明了分别进入该问题的各种重要参数的皮肤摩擦,热传递速率(努塞尔数)和质量传递速率(谢尔伍德数)。最后,为了保证本结果的准确性,已完成了与以前发表的研究工作的比较,并被证明是极好的协议。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号