考虑高阶化学反应和热辐射的MHD麦克斯韦纳米流体流过拉伸片的计算处理

Rajib Biswas , Md. Shahadat Hossain , Rafiqul Islam , Sarder Firoz Ahmmed , S.R. Mishra , Mohammad Afikuzzaman
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引用次数: 27

摘要

本分析报告了二维麦克斯韦纳米流体在布朗运动外观下通过拉伸片的磁流体动力学(MHD)流动行为的计算研究。在目前的研究中,热辐射和化学反应已被广泛应用。研究人员通常选择纳米流体是因为它们的流变特性,这对于决定它们是否适合对流换热是很重要的。研究表明,流体速度随各参数的增大值而增大。热源和辐射参数确保流体中有足够的热量,这意味着通过累积辐射参数来增加热边界层厚度。此外,还研究了不同参数值下的流线和等温线。所建议的模型很有价值,因为它在医学(癌症疗法的治疗)、微电子学、生物医学、生物学和工业生产过程等领域具有广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational treatment of MHD Maxwell nanofluid flow across a stretching sheet considering higher-order chemical reaction and thermal radiation

The present analysis reports a computational study of Magnetohydrodynamic (MHD) flow behaviour of 2D Maxwell nanofluid across a stretched sheet in appearance of Brownian motion. The substantial term thermal radiation and chemical reactions have been employed extensively in the current research. Nanofluids are usually chosen by researchers because of their rheological properties, which are important in determining their appropriateness for convective heat transfer. The present research reveals that the fluid velocity augments for the enhanced values of all the parameters. Heat source, as well as the radiation parameters, ensure that there is enough heat in the fluid, which implies escalation of the thermal boundary layer thickness by accruing radiation parameter. Moreover, streamlines and isotherms have been investigated for the different parametric values. The suggested model is valuable because it has a wide range of applications in domains including medical sciences (treatment of cancer therapeutics), microelectronics, biomedicine, biology, and industrial production processes.

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