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首页> 外文期刊>Case Studies in Thermal Engineering >Numerical study for bioconvection transport of micropolar nanofluid over a thin needle with thermal and exponential space-based heat source
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Numerical study for bioconvection transport of micropolar nanofluid over a thin needle with thermal and exponential space-based heat source

机译:薄针在薄针与热和指数空间热源薄针中的生物缺陷传输数值研究

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Nanomaterials are the latest technique to upgrade thermal conduction of base liquids. The submerging of these nanomaterials in base liquid is known as nanofluid. In recent time the nanofluids are more useful in mechanical engineering, nanotechnology, bioscience, biotechnology and in many sectors. This analysis deals with the bio-convection transport of micropolar liquid containing nanomaterial’s and gyrotactic motile microorganisms past a needle moving in parallel flow in occurrence of thermally radiation and activation-energy. Modeling of needle structure for bioconvection flow of micropolar nanofluid is developed. The behavior of temperature and exponential space-based heat source is considered. The boundary layer flow expressions for developed transport issue are represented by PDEs. Suitable similarity variables are used to change transport expressions in nondimensional nonlinear ordinary differential ones. The bvp4c algorithm has been used to numerically tackle dimensionless nonlinear differential equations (ODEs). All results are described by employing bvp4c tool in MATLAB. Impacts of active numbers on flow distributions are examined with sketches and tables. Temperature field and heat transfer rate are quite opposite for exponential space-based heat source sink parameter and heat sink/ source parameter. The concentration of nanoparticles is reduced for larger amount of Brownian motion parameter while uplifts for thermophoresis parameter. Concentration is enriched for the growing magnitudes of thermophoresis number. Higher Peclet parameter decayed the microorganism’s field.
机译:纳米材料是升级基础液体热传导的最新技术。将这些纳米材料的浸没在基础液中称为纳米流体。最近,纳米流体在机械工程,纳米技术,生物科学,生物技术和许多部门中更有用。该分析涉及含有纳米材料和旋转动机微生物的微柱液体的生物对流传输,经过针在并联流动中移动的针刺发生热辐射和活化能量。开发了微柱纳米流体对生物脉冲流动针结构的建模。考虑了温度和指数空间的热源的行为。发达传输问题的边界层流动表达式由PDE表示。合适的相似变量用于在非潜能非线性常规差分中更改运输表达式。 BVP4C算法已用于数值上旋转无量纲非线性微分方程(ODES)。所有结果都通过在Matlab中使用BVP4C工具来描述。用草图和表格检查活动数对流量分布的影响。温度场和传热速率对于指数空间的热源散射参数和散热器/源参数非常相反。纳米颗粒的浓度降低,用于较大量的褐色运动参数,同时隆起热孔参数。富集浓度富集的热孔瘤数量。较高的PECLET参数衰减微生物的字段。

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