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首页> 外文期刊>International Communications in Heat and Mass Transfer >Electromagnetic flow of SWCNT/MWCNT suspensions with optimized entropy generation and cubic auto catalysis chemical reaction
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Electromagnetic flow of SWCNT/MWCNT suspensions with optimized entropy generation and cubic auto catalysis chemical reaction

机译:SWCNT / MWCNT悬浮液的电磁流,具有优化的熵生成和立方自动催化化学反应

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摘要

A boundary layer analysis of three dimensional electromagnetic flows of single and multi walls carbon nanotubes over the surface of a thin needle is addressed. Both single wall (SWCNTs) and multi wall (MWCNTs) are considered as nanoparticles whereas water is considered as base liquid. The energy equation is modeled by using non-linear thermal radiation because it has a major impact on the solar energy absorption capacity of nanofluid. Because of such solar energy utilization at greater scale, global warming/pollution levels can be controlled. Homogeneous-heterogeneous reactions are taken into consideration as they find their applications in catalysis, biochemical systems, combustion, batteries, corrosion phenomenon and electrolytic cells. Xue model describing the augmentation of thermal conductivity of carbon nanotubes is invoked. Entropy generation model is adopted because its minimization prevents the loss of available energy which in turn boosts the efficiency of thermal systems. Nonlinear differential equations representing flow expressions are numerically solved by shooting technique. The outcome of the present study is that velocity field lines are grown due to strengthening of electric field parameter in the flow of SWCNT-water and MWCNT-water nanofluids. Brinkman number uplifts the entropy generation.
机译:解决了薄针表面上的单壁碳纳米管的三维电磁流的边界层分析。单壁(SWCNT)和多壁(MWCNT)都被认为是纳米颗粒,而水被认为是基础液体。通过使用非线性热辐射建模能量方程,因为它对纳米流体的太阳能吸收能力产生了重大影响。由于这种在更大的太阳能利用率,可以控制全球变暖/污染水平。考虑到均相 - 异质反应,因为它们在催化作用,生物化学系统,燃烧,电池,腐蚀现象和电解细胞中发现它们的应用。调用描述碳纳米管导热率的增强的Xue模型。采用熵生成模型,因为其最小化防止了可用能量的损失,这反过来促进了热系统的效率。表示流动表达式的非线性微分方程通过拍摄技术进行了数值解决。本研究的结果是由于在SWCNT水和MWCNT水纳米流体流动中强化电场参数而生长速度场线。 Brinkman号码隆起熵生成。

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