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2篇 您的检索式:作者名="Maria Athar"
    题名 作者 年代 出处 被引量
1聚合物对纳米流体通过可拉伸表面的阻力和传热导的影响:一种分子方法显示文摘本文研究了聚合物对纳米流体通过均匀加热的可渗透的垂直拉伸表面的阻力降低和热传导增强的影响,研究的重点是分析纳米流体中聚合物对阻力系数、努塞尔数和舍伍德数的影响。利用分散模型研究纳米颗粒存在下的流体流动和传热行为。选择分子方法来探索基流体中添加聚合物的影响。添加聚合物会在动量方程中产生了一个额外的应力。对控制边界层方程进行数值求解,研究工程感兴趣的物理量对不同流量参数的依赖关系。由于聚合物添加剂的存在,阻力系数、努塞特数和舍伍德数都有所减少。ADEEL Ahmad MARIA Athar YASIR Khan 2022Journal of Central South University2022,29,12:4
2Mechanism of Thermally Radiative Prandtl Nanofluids and Double-Diffusive Convection in Tapered Channel on Peristaltic Flow with Viscous Dissipation and Induced Magnetic Field显示文摘The application of mathematical modeling to biological fluids is of utmost importance, as it has diverse applicationsin medicine. The peristaltic mechanism plays a crucial role in understanding numerous biological flows. In thispaper, we present a theoretical investigation of the double diffusion convection in the peristaltic transport of aPrandtl nanofluid through an asymmetric tapered channel under the combined action of thermal radiation andan induced magnetic field. The equations for the current flow scenario are developed, incorporating relevantassumptions, and considering the effect of viscous dissipation. The impact of thermal radiation and doublediffusion on public health is of particular interest. For instance, infrared radiation techniques have been used totreat various skin-related diseases and can also be employed as a measure of thermotherapy for some bones toenhance blood circulation, with radiation increasing blood flow by approximately 80%. To solve the governingequations, we employ a numerical method with the aid of symbolic software such as Mathematica and MATLAB.The velocity, magnetic force function, pressure rise, temperature, solute (species) concentration, and nanoparticlevolume fraction profiles are analytically derived and graphically displayed. The results outcomes are compared withthe findings of limiting situations for verification.Yasir Khan Safia Akram Maria Athar Khalid Saeed Alia Razia A.Alameer 2024Computer Modeling in Engineering & Sciences2024,138,2:0
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