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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Mixed convection stagnation point flow of a hybrid nanofluid past a vertical flat plate with a second order velocity model
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Mixed convection stagnation point flow of a hybrid nanofluid past a vertical flat plate with a second order velocity model

机译:杂交纳米流体的混合对流停滞点流过期垂直平板,具有二阶速度模型

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摘要

Purpose - The purpose of this study is to describe the steady mixed convection stagnation point of a hybrid nanofluid with a second-order velocity slip. Design/methodology/approach - Using appropriate similarity variables, the partial differential equations are transformed into ordinary (similar) differential equations, which are numerically solved using the bvp4c function in MATLAB. The numerical results are used to present graphical illustrations for the reduced skin friction, reduced Nusselt number, velocity and temperature profiles. Findings - Dual solutions are discovered in this study. Thus, stability analysis is implemented and the first (upper branch) and second (lower branch) solutions are determined and analyzed. Research limitations/implications - Hybrid nanofluids have many practical applications in the modern industry such as in micro-manufacturing, periodic heat exchanges process, nano drug delivery system and nuclear reactors. Originality/value - Despite numerous studies on the mixed convection stagnation point of classical viscous fluids past a vertical plate flow, none of the researchers have focused on the effect of second-order slip velocity on hybrid nanofluids. The behavior of the flow and heat transfer has been thoroughly analyzed with the variations in governing parameters such as heat source/sink and nanoparticle volume fraction. Moreover, the use of the wall slip velocity in this hybrid nanofluid model strengthened the novelty of this study.
机译:目的 - 本研究的目的是描述具有二阶速度滑动的杂种纳米流体的稳定混合对流停滞点。设计/方法/方法 - 使用适当的相似变量,局部微分方程被转换为普通(类似的)微分方程,这些方程在MATLAB中的BVP4C功能进行了数值求解的。数值结果用于提高肌肤摩擦,降低的露珠数,速度和温度型材的图形图示。调查结果 - 在本研究中发现了双解决方案。因此,实现了稳定性分析,并确定并分析第一(上部分支)和第二(下分支)解决方案。研究限制/影响 - 杂交纳米流体在现代行业中具有许多实际应用,如微制造,周期性热交换器,纳米药物输送系统和核反应堆。原创/价值 - 尽管有许多研究古典粘液流体的混合对流停滞点,但是研究人员都没有集中于二阶滑动速度对杂交纳米流体的影响。利用诸如热源/下沉和纳米颗粒体积分数的控制参数的变化,已经彻底分析了流动和传热的行为。此外,在该杂交纳米流体模型中使用壁滑速的使用加强了该研究的新颖性。

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