Effects of radiation and chemical reaction on MHD flow past a vertical plate with variable temperature and mass diffusion

IF 1.2 Q3 ENGINEERING, MARINE Journal of Naval Architecture and Marine Engineering Pub Date : 2019-12-29 DOI:10.3329/jname.v16i2.29526
U. S. Rajput, G. Kumar
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引用次数: 16

Abstract

This research investigates the effects of radiation, chemical reaction and porosity of the medium on unsteady flow of a viscous, incompressible and electrically conducting fluid past an exponentially accelerated vertical plate with variable wall temperature and mass diffusion in the presence of transversely applied uniform magnetic field. The plate temperature and the concentration level near the plate increase linearly with time. The fluid model under consideration has been solved by Laplace transform technique. The model contains equations of motion, diffusion equation and equation of energy. To analyze the solution of the model, reasonable sets of the values of the parameters have been considered. The numerical data obtained is discussed with the help of graphs and tables. The numerical values obtained for skin-friction, Sherwood number and Nusselt number have been tabulated. It is found that the velocity of fluid increases when the values of permeability parameter, acceleration parameter and radiation parameter are increased. But trend is reversed with the chemical reaction parameter. It means that the velocity decreases when the chemical reaction parameter is increased.
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辐射和化学反应对变温度和质量扩散垂直板MHD流动的影响
本研究研究了介质的辐射、化学反应和孔隙率对粘性、不可压缩和导电流体在横向施加均匀磁场的情况下通过具有可变壁温和质量扩散的指数加速垂直板的非定常流动的影响。板温度和板附近的浓度水平随时间线性增加。采用拉普拉斯变换技术对所考虑的流体模型进行了求解。该模型包含运动方程、扩散方程和能量方程。为了分析模型的解,考虑了合理的参数值集。借助图表对所获得的数值数据进行了讨论。表中列出了表面摩擦、舍伍德数和努塞尔数的数值。研究发现,随着渗透率参数、加速度参数和辐射参数的增大,流体速度增大。但随着化学反应参数的变化,趋势发生了逆转。这意味着当化学反应参数增加时,速度降低。
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来源期刊
CiteScore
2.50
自引率
5.60%
发文量
0
审稿时长
20 weeks
期刊介绍: TJPRC: Journal of Naval Architecture and Marine Engineering (JNAME) is a peer reviewed journal and it provides a forum for engineers and scientists from a wide range of disciplines to present and discuss various phenomena in the utilization and preservation of ocean environment. Without being limited by the traditional categorization, it is encouraged to present advanced technology development and scientific research, as long as they are aimed for more and better human engagement with ocean environment. Topics include, but not limited to: marine hydrodynamics; structural mechanics; marine propulsion system; design methodology & practice; production technology; system dynamics & control; marine equipment technology; materials science; under-water acoustics; satellite observations; and information technology related to ship and marine systems; ocean energy systems; marine environmental engineering; maritime safety engineering; polar & arctic engineering; coastal & port engineering; aqua-cultural engineering; sub-sea engineering; and specialized water-craft engineering. International Journal of Naval Architecture and Ocean Engineering is published quarterly by the Society of Naval Architects of Korea. In addition to original, full-length, refereed papers, review articles by leading authorities and articulated technical discussions of highly technical interest are also published.
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