首页> 美国卫生研究院文献>Molecules >Thermal Transport Investigation in Magneto-Radiative GO-MoS2/H2O-C2H6O2 Hybrid Nanofluid Subject to Cattaneo–Christov Model
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Thermal Transport Investigation in Magneto-Radiative GO-MoS2/H2O-C2H6O2 Hybrid Nanofluid Subject to Cattaneo–Christov Model

机译:受Cattaneo–Christov模型影响的磁辐射GO-MoS2 / H2O-C2H6O2杂化纳米流体的热输运研究

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摘要

Currently, thermal investigation in hybrid colloidal liquids is noteworthy. It has applications in medical sciences, drug delivery, computer chips, electronics, the paint industry, mechanical engineering and to perceive the cancer cell in human body and many more. Therefore, the study is carried out for 3D magnetized hybrid nanofluid by plugging the novel Cattaneo–Christov model and thermal radiations. The dimensionless version of the model is successfully handled via an analytical technique. From the reported analysis, it is examined that Graphene Oxide-molybdenum disulfide/C H O -H O has better heat transport characteristics and is therefore reliable for industrial and technological purposes. The temperature of Graphene Oxide GO-molybdenum disulfide/C H O -H O enhances in the presence of thermal relaxation parameter and radiative effects. Also, it is noted that rotational velocity of the hybrid nanofluid rises for stronger magnetic parameter effects. Moreover, prevailed behavior of thermal conductivity of GO-molybdenum disulfide/C H O -H O is detected which shows that hybrid nanofluids are a better conductor as compared to that of a regular nanofluid.
机译:目前,在混合胶体液体中进行热研究是值得注意的。它在医学,药物输送,计算机芯片,电子,涂料工业,机械工程中具有应用,并可以感知人体中的癌细胞等。因此,通过插入新颖的Cattaneo-Christov模型和热辐射,对3D磁化混合纳米流体进行了研究。该模型的无量纲版本已通过分析技术成功处理。从报告的分析中,可以检查出氧化石墨烯-二硫化钼/ C H O -H O具有更好的热传递特性,因此对于工业和技术目的是可靠的。在存在热弛豫参数和辐射效应的情况下,氧化石墨烯GO-二硫化钼/ C H O -H O的温度升高。此外,应注意的是,杂化纳米流体的旋转速度增加,以获得更强的磁参数效应。此外,检测到GO-二硫化钼/ C H O -H O的热导率占主导的行为,这表明与常规纳米流体相比,杂化纳米流体是更好的导体。

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