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Transient nanofluid flow and energy dissipation from wavy surface using magnetic field and two rotating cylinders

机译:使用磁场和两个旋转气缸的波浪表面的瞬时纳米流体流动和能量耗散

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The problem of transient Magnetohydrodynamic (MHD) combined convection within a wavy-heated rectangular cavity having two inner cylinders is investigated using the non-homogeneous nanofluid scheme. The lower wavy surface of the cavity is kept at a constant hot temperature (T-h) while the upper flat surface is kept at a constant cold temperature (T-c). The remaining surfaces (vertical surfaces) are maintained adiabatic. An Al2O3/water nanofluid is filled inside the cavity and a non-homogeneous approach is adopted to solve governing equations by using the Galerkin method. The effect of some parameters such as the angular rotational speed, the volume fraction of nanoparticles, Hartmann number on the flow and heat transfer characteristics are examined. The results indicate that the waving of the hot base of the cavity enhances the Nusselt number. The maximal Nusselt numbers are obtained when the number of undulations N is 2, where the Nusselt number augments by 18% when N is boosted from 0 to 2 and by 16% from 0 to and 5. Also, the outcomes reveal that the enhancement of the Nusselt number as a result of raising the rotational speed of the two cylinders from 0 to +/- 500 is about 315%.
机译:使用非均质纳米流体方案研究了具有两个内圆柱的波状加热矩形腔内的瞬态磁力学(MHD)组合对流的问题。腔的下波浪表面保持在恒定的热温度(T-H)处,而上平面保持在恒定的寒冷温度(T-C)。剩余的表面(垂直表面)保持绝热。在腔内填充Al 2 O 3 /水纳米流体,采用非均匀方法来解决通过Galerkin方法来解决方程。研究了一些参数,例如角度转速,纳米颗粒的体积分数,Hartmann数对流动和传热特性的影响。结果表明,腔的热基的挥手增强了尤塞格数。当波浪数n为2时获得最大露珠数,当NUSESET编号增加18%时,当N升高到0到2和0到0到5%时,结果表明,结果表明增强了由于提高0至+/- 500的两个气缸的转速而导致的营养号为约315%。

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