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Effects of thermal radiation and mass diffusion on free convection flow past an impulsively started infinite vertical plate with ramped temperature

机译:热辐射和质量扩散对自由对流流动的影响,该自由对流流经温度呈脉冲上升的无限垂直板

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The effects of thermal radiation on unsteady free convection flow of a viscous incompressible fluid past an impulsively started infinite vertical plate in the presence of chemical species concentration and a temperature boundary condition which follows a ramp function up until some specified time and then remains constant has been investigated. The fluid is assumed to be gray, emitting-absorbing but non-scattering medium, and the optically thin radiation limit is considered. The dimensionless governing equations are solved using Laplace transform technique. The velocity and temperature profiles and the Nusselt number are shown on graphs for different air flows. The variation of skin-friction is also shown in tabular form. The effects of different parameters like radiation parameter, thermal Grashof number, Schmidt number, mass to thermal buoyancy ratio parameter and time are discussed. It is observed that the velocity increases with decreasing radiation parameter. The Nusselt number increases as time increases to unity and thereafter decreases to the steady state gradually. The interaction of free convection with thermal radiation near a ramped temperature plate has also been compared with the flow near a plate with constant temperature.
机译:在存在化学物质浓度和温度边界条件的情况下,热辐射对粘性不可压缩流体通过脉冲开始的无限垂直板的不稳定不稳定对流的影响,该温度边界条件遵循斜坡函数直到某个指定时间,然后保持恒定调查。假定流体是灰色的,吸收发射但不散射的介质,并考虑了光学上较薄的辐射极限。无量纲控制方程使用拉普拉斯变换技术求解。图中显示了不同气流的速度和温度曲线以及Nusselt数。皮肤摩擦的变化也以表格形式显示。讨论了辐射参数,热格拉索夫数,施密特数,质热浮比参数和时间等不同参数的影响。可以看出,速度随着辐射参数的减小而增加。 Nusselt数随着时间增加到1而增加,此后逐渐减小到稳态。自由对流与温度梯度板附近的热辐射的相互作用也已与温度恒定的板附近的流进行了比较。

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