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首页> 外文期刊>International Communications in Heat and Mass Transfer >Role of bioconvection in a three dimensional tangent hyperbolic partially ionized magnetized nanofluid flow with Cattaneo-Christov heat flux and activation energy
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Role of bioconvection in a three dimensional tangent hyperbolic partially ionized magnetized nanofluid flow with Cattaneo-Christov heat flux and activation energy

机译:生物纤维在三维切线双曲线部分电离磁化纳米流体与Cattaneo-Christov热通量和活化能量的作用

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摘要

A new mathematical model is envisaged that discusses the flow of the three-dimensional Tangent hyperbolic nanofluid flow with Hall current and Ion slip influenced by a strong magnetic field past a stretching sheet. The heat transmission phenomenon is analyzed in attendance of modified Fourier law amalgamated with Newtonian heating, the Arrhenius activation energy, and chemical reaction. The induction of gyrotactic microorganisms boosts the stability of the immersed nanoparticles into the customary fluid. The use of pertinent transformations converts the envisioned model in the form of partial differential equations into the coupled differential equations. The MATLAB software function bvp4c is engaged to address the highly nonlinear system of equations. The association of the involved profiles with the pertinent parameters is discussed in length logically and is depicted through graphs and the numerically erected tables. The results revealed that the fluid velocity is increased when Hall current and the Ion slip are strengthened. Moreover, the concentration of the fluid is enhanced when the values of the activation energy are improved. A comparison table with an already established result is also added to this investigation to validate the envisioned model. A good correlation between the two fallouts is obtained.
机译:设想了一种新的数学模型,其讨论了三维切线双曲纳米流体流动与霍尔电流和离子滑移的流动,其受到拉伸板的强磁场的影响。分析了热传递现象,以考虑到牛顿加热,阿勒尼斯激活能量和化学反应的改良傅立叶法融合。旋转术微生物的诱导使浸渍纳米颗粒的稳定性提高到常规液中。相关变换的使用将部分微分方程的形式转换为耦合的微分方程。 MATLAB软件功能BVP4C从事以解决高度非线性等式系统。所涉及的简档与相关参数的关联在逻辑上讨论并通过图表和数值竖立的表格描绘。结果表明,当霍尔电流和离子滑移加强时,流体速度增加。此外,当改善活化能量的值时,增强了流体的浓度。对于已建立的结果的比较表也被添加到本研究中以验证设想的模型。获得两个辐射之间的良好相关性。

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