Influence of solar thermal radiations and convective boundary on Al2O3/H2O transient model efficiency

IF 1.7 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES Journal of Radiation Research and Applied Sciences Pub Date : 2024-09-24 DOI:10.1016/j.jrras.2024.101117
Adnan , Ghulfam Sarfraz , Sami Ullah Khan , Dennis Ling Chuan Ching , Ilyas Khan , Ahmed Mir , Yasir Khan , Lioua Kolsi
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Abstract

Riga plate is a new, sophisticated magnetic field device that may be created by adjusting a group of permanent magnets and a different electrode over a plane surface. The heat transport and fluid movement in such physical setup are of paramount interest and have numerous engineering and industrial application particularly in submarines technologies. Due to the fixed magnetics the field produced which imperatively affect the model dynamics. Keeping in mind the influential applications of such physical setup, the purpose of this study is to introduce a new model based scrutinization of heat transport of stagnation point flow of Al2O3/water along vertically oriented convectively heated Riga surface. The conventional stagnation point flow model extended for nanofluid via radiative heat flux, dissipation effects and the first order thermal slip. The values of thermal conductivity values estimated via Corcione model and achieved the final nanoliquid model. For the results interpretation, the numerical scheme used and portrayed the results using different parametric ranges. The fluid motion is observed very slow due to stronger mixed convection and higher concentration of Al2O3 nanoparticles. The temperature is determined very high against the stronger convection effects and radiation number. However, the fluid layers in the vicinity of Riga surface have high heat transmission ability. Further, thermal slip and viscous dissipation effects also boost the temperature of Al2O3/water. Further, buoyancy number δ resists the fluid movement and thermal boundary region reduces in the presence of buoyancy factor.
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太阳热辐射和对流边界对 Al2O3/H2O 瞬态模型效率的影响
里加板是一种新型、复杂的磁场装置,可通过调整平面上的一组永久磁铁和一个不同的电极来创建。在这种物理装置中,热量传输和流体运动是人们最感兴趣的问题,在工程和工业领域,特别是潜艇技术中有着广泛的应用。由于磁性固定,产生的磁场会对模型动力学产生重要影响。考虑到这种物理设置的影响性应用,本研究的目的是引入一种新的模型,基于对沿垂直方向对流加热的里加表面的 Al2O3/ 水的停滞点流动的热传输进行仔细研究。传统的停滞点流动模型通过辐射热流、耗散效应和一阶热滑移对纳米流体进行了扩展。通过 Corcione 模型估算热导率值,最终得出纳米流体模型。为了解释结果,使用了数值方案,并在不同参数范围内描绘了结果。由于混合对流较强和 Al2O3 纳米粒子浓度较高,流体运动非常缓慢。在较强的对流效应和辐射数作用下,温度被确定得很高。然而,里加表面附近的流体层具有很强的热传导能力。此外,热滑移和粘性耗散效应也会提高 Al2O3/水的温度。此外,浮力系数 δ 会阻碍流体运动,热边界区域也会在浮力系数的作用下缩小。
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来源期刊
自引率
5.90%
发文量
130
审稿时长
16 weeks
期刊介绍: Journal of Radiation Research and Applied Sciences provides a high quality medium for the publication of substantial, original and scientific and technological papers on the development and applications of nuclear, radiation and isotopes in biology, medicine, drugs, biochemistry, microbiology, agriculture, entomology, food technology, chemistry, physics, solid states, engineering, environmental and applied sciences.
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