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首页> 外文期刊>Journal of Nanofluids >Entropy Optimization and Heat Transfer Analysis of Magneto-Bioconvective Powell Eyring Nanofluid with Nonlinear Thermal Radiation and Chemical Reaction Over a Stretching Sheet
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Entropy Optimization and Heat Transfer Analysis of Magneto-Bioconvective Powell Eyring Nanofluid with Nonlinear Thermal Radiation and Chemical Reaction Over a Stretching Sheet

机译:磁生物对流Powell Eyring纳米流体在拉伸片上的非线性热辐射和化学反应的熵优化和传热分析

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This paper investigates the entropy generation in the bioconvection of Powell Eyring nanofluid containing motile gyrotactic microorganisms over a convectively stretching sheet. The influences of magnetohydrodynamic forces, nonlinear thermal radiation effects, chemical reactions of species in a Powell Eyring nanofluid flow are analyzed. Motile microorganisms are added along with nanoparticles in the Powell Eyring base fluid for the prevention of nanoparticles agglomeration and to stabilize the nanoparticles in the suspension. The governing nonlinear partial differential equations along with boundary conditions are solved numerically after these equations are transformed into a system of nonlinear ordinary differential equations by using the similarity transformation. The results are compared with previously published research papers. The impact of significant physical and bioconvection parameters on the profile of nanofluid velocity, temperature, nanoparticles concentration, the density of motile microorganisms, and entropy generation are analyzed graphically. It is noticed that the velocity IP: 182.75.148.10 On: Sat, 13 Aug 2022 10:40:20 profile increases by increasing the values of the Powell Eyring fluid parameter. The incidence of nanoparticles Copyright: American Scientific Publishers Delivered by Ingenta in Powell Eyring nanofluid decreases the nanoparticle concentration due to an increase in the value of the chemical reaction parameter and Lewis number. Also, the profile of entropy generation increases as the values of Br, gamma(1), and gamma(2) are increased.
机译:探讨熵的一代鲍威尔的bioconvection艾林nanofluid包含运动型gyrotactic微生物一个对流拉伸单。磁流体动力的力量,非线性热辐射的影响,化学反应的物种在鲍威尔艾林nanofluid流进行了分析。能动的微生物被添加纳米粒子在鲍威尔艾林基液防止纳米颗粒聚集稳定的纳米粒子悬浮。执政的非线性偏微分方程和边界条件这些方程数值求解后转换成一个系统的非线性普通微分方程利用相似转换。先前发表的研究论文。重要的生理和bioconvection参数的形象nanofluid速度,温度、纳米粒子的浓度能动的微生物密度和熵生成图形化分析。注意到速度IP: 182.75.148.10:坐,2022年8月13日10:40:20概要增加增加的值鲍威尔艾林液体参数。版权:美国科学出版社在鲍威尔艾林nanofluid Ingenta交付减少纳米粒子浓度由于化学反应的价值的增加参数和路易斯数。熵代增加Br的值,γ(1),和γ(2)增加。

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