基于形状因子的水基液体中MoS2-GO混合纳米液体的轴对称磁流混合对流

Umair Khan, A. Zaib, Prof Dr Hamed Daei Kasmaei, M. Malaver
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引用次数: 3

摘要

本文将全面研究横向磁场和热辐射对H2O-C2H6O2基杂化纳米液体中MoS2-GO形状因子分析的影响。探讨了不同参数和纳米液体形状的变化对温度和速度分布的影响,并分析了非线性热辐射。根据算法的数值结果和对比曲线,按比例介绍算法,以便进一步解释。此外,还将研究新出现的重要参数对模型的影响和作用,进行敏感性分析,并通过图表的形式对其输出结果进行论证、检验和比较。在详细讨论的基础上,对所得结果进行了验证,表明本文所采用的求解模型的方法具有较高的准确性。结果表明,该方法准确、可靠、有效。所有提到的步骤将在整个文献中描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mixed Convective in an Axisymmetric Magneto Flow Owing to MoS2-GO Hybrid Nanoliquids in H2O Based Liquid through an Upright Cylinder with Shape Factor
In the presented paper, a comprehensive study will be done on shape factor analysis of MoS2-GO in H2O-C2H6O2 based hybrid nanoliquids associated with effect and influence of transverse magnetic field and thermal radiation. The effect of variation in different parameters and nanoliquids shapes under temperature and velocity distribution is explored and also non-linear thermal radiation will be analyzed. Algorithms are introduced in proportion to mathematical modeling based on their numerical results and comparative curves for further explanation. In addition, it will be done research for influence and effect of new significant parameters emerged to the model to do sensitivity analysis and also their output results are demonstrated, examined and compared together by presenting graphs and tables. Based on detailed discussions, authentication of attained results designates the high accuracy of applied methods deployed to solve presented model in the paper. Our results satisfy that our used approach is accurate, highly reliable and also effective. All mentioned steps will be described throughout the literature.
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