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Effects of Relative Magnetic Field Chemical Reaction Heat Generation and Newtonian Heating on Convection Flow of Casson Fluid over a Moving Vertical Plate Embedded in a Porous Medium

机译:相对磁场化学反应生热和牛顿热对卡森流体在多孔介质中埋置的垂直移动板上的对流的影响

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摘要

The aim of this article is to study the combined effects of heat generation and chemical reaction on magnetohydrodynamic (MHD) natural convection flow over a moving plate embedded in a porous medium. Natural convection is caused due to buoyancy forced which has been induced because of temperature and concentration gradients. The general condition of velocity has been considered on the plate surface with Newtonian heating and constant wall concentration. The effect of thermal radiation is also considered in the energy equation. The main objective here is to study the relative behavior of the magnetic field. That is the magnetic field shows two types of relative behavior. More exactly, when the magnetic field is fixed relative to the fluid (MFFRF) and the magnetic field is fixed relative to the plate (MFFRP). The general exact solution of the problem is determined by the Laplace transform method. Particular solutions for two special cases namely the plate with variable vibration and the plate with sine and cosine oscillations are also determined. Moreover, the solutions when ζ → ∞ for both cases i.e. MFFRF and MFFRP are also obtained as special cases. The velocity profile is presented in the form of mechanical, thermal and concentration components. Velocity obtained for oscillating plate condition is written in terms of steady-state and transient parts. Exact solutions obtained in this paper are interpreted graphically using computational software Mathcad-15 to examine the effects of various pertinent parameters such as Casson fluid parameter, the permeability of porous medium, chemical reaction parameter, heat generation parameter, buoyancy force parameter, magnetic parameter, and radiation parameter. Results for Sherwood number, skin-friction, and Nusselt number are numerically computed and discussed.
机译:本文的目的是研究热量和化学反应对嵌入多孔介质中的移动板上磁流体动力学(MHD)自然对流的综合影响。自然对流是由于温度和浓度梯度引起的强迫浮力引起的。在牛顿加热和恒定壁浓度的情况下,已经考虑了板表面速度的一般条件。能量方程中也考虑了热辐射的影响。这里的主要目的是研究磁场的相对行为。也就是说磁场显示出两种相对行为。更准确地说,当磁场相对于流体(MFFRF)固定且磁场相对于平板(MFFRP)固定时。通过Laplace变换方法确定问题的一般精确解决方案。还确定了两种特殊情况的特殊解,即振动可变的板和正弦和余弦振动的板。此外,作为特殊情况,还获得了两种情况即MFFRF和MFFRP的ζ→∞时的解。速度分布以机械,热和集中分量的形式表示。振荡板状态下获得的速度用稳态和瞬态部分表示。使用计算软件Mathcad-15以图形方式解释本文获得的精确解,以检查各种相关参数的影响,例如卡森流体参数,多孔介质的渗透性,化学反应参数,生热参数,浮力参数,磁参数,和辐射参数。 Sherwood数,皮肤摩擦和Nusselt数的结果将通过数值计算和讨论。

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