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3D mixed convection MHD flow of GO-MoS_2 hybrid nanoparticles in H_20-(CH_2OH)_2 hybrid base fluid under the effect of H_2 bond

机译:H_2键作用下GO_MoS_2杂化纳米粒子在H_20-(CH_2OH)_2杂化基液中的3D混合对流MHD流动

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In this achievement, the physical perspectives on 3D natural convection MHD flow of GO- MoS_2 / Water (H_2O)-Ethylene glycol (C_2H_6O_2) (50:50 Vol%) hybrid nanofluid under the effect of thermal ray, shape and slip factors has been presented using Runge- Kutta Fehlberg 5th order (RKF-5) numerical procedure. The infiltration of diverse parameters for instance: suction/ injection parameters, thermal radiation, and nanoparticle shapes (Cylinders, Platelets, and Bricks), on velocity and temperature profiles are exemplified qualitatively through graphs. Outputs indicate that: Lorentz force created by augmenting magnetic square parameter (M) causes diminution in the velocity profile. The radiation parameter has used to breakdown hydrogen bonds of fluid molecules. Additionally, strong hydrogen bonding of hybrid nanofluid (GO- MoS_2) causes a sharp increase in thermal conductivity and, consequently, increment in temperature profile (H_2 bond_(Hybrid-phase) > H_2 bond_(Nano-phase). Increasing the shape factor has always increased temperature profile and heat transfer rate, so the number of hydrogen bonds also decreases.
机译:在这一成就中,在热射线,形状和滑移因子的影响下,GO- MoS_2 /水(H_2O)-乙二醇(C_2H_6O_2)(50:50 Vol%)混合纳米流体的3D自然对流MHD流动的物理观点已经得到使用Runge-Kutta Fehlberg五阶(RKF-5)数值程序表示。通过图表定性地举例说明了速度和温度曲线上各种参数的渗透,例如:吸气/注入参数,热辐射和纳米颗粒形状(圆柱体,血小板和砖块)。输出表明:通过增大磁平方参数(M)产生的洛伦兹力会导致速度曲线减小。辐射参数已用于分解流体分子的氢键。此外,杂化纳米流体(GO-MoS_2)的强氢键会导致热导率急剧增加,因此,温度曲线会增加(H_2 bond_(杂相)> H_2 bond_(纳米相)。总是增加温度分布和传热速率,因此氢键的数量也减少。

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