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首页> 外文期刊>International Communications in Heat and Mass Transfer >Falkner-Skan time-dependent bioconvrction flow of cross nanofluid with nonlinear thermal radiation, activation energy and melting process
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Falkner-Skan time-dependent bioconvrction flow of cross nanofluid with nonlinear thermal radiation, activation energy and melting process

机译:Falkner-Skan时间依赖于非线性热辐射,激活能量和熔化过程的交叉纳米流体的依赖于依赖的生物颤动流量

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摘要

Owing to the dyanamic applications of nanoparticles in various bio-medical and engineering apllications like cancertheropy, microelectronics, energy storage devices, cooling and heating processes, the researchers have intended their focus toward this topic. On this end, the motivating objective of current communication is to investigate the Falkner-Skan bioconvection flow of cross nanofluid conformist with melting phenomenon over a moving wedge. The impact of activation energy and nonlinear thermal radiation are also addresed. The famous Buongiorno model is utilized for thermophoretic and Brownian asesment analysis. The governing equations for time dependent Falkner-skin flow of cross fluid mathematical models are simplified into a dimensionless coupled system of ordinary differential expressions by applying adequate similarity transformation. The developed subsequent differential system is solved numerically through engaged shooting solver in computational software MATLAB. The graphical analysis against flow parameters has been performed against velocity, nanofluid temperature, conctration profile and gytoractic microorganisms.
机译:由于纳米粒子在各种生物医学和工程的方法等癌症,微电子,能量存储装置,冷却和加热过程等各种生物医学和工程产品中的应用,研究人员旨在重点朝着这个主题。在此,当前通信的激励目标是研究交叉纳米流体符合者在移动楔上的熔化现象的Falkner-Skan生物vection流。激活能量和非线性热辐射的影响也均得到含量。着名的Buongiorno模型用于热渗透和褐色助理分析。通过应用足够的相似性转化,简化了交叉流体数学模型的时间依赖性数学模型的时间依赖性差异数学模型的无量子表达式。通过计算软件Matlab中的接合射击求解器来解决显影后续差分系统。对流动参数的图解分析已经针对速度,纳米流体温度,圆锥形微生物进行了针对速度,纳米流体温度,循环微生物进行。

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