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磁场分布不均匀性对磁流变液剪切传力的影响 被引量:4
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作者 杨岩 邹继文 黄金 《现代制造工程》 CSCD 北大核心 2003年第2期9-11,共3页
通过对磁流变液剪切传力机理的研究 ,充分考虑磁场饱和情况以及磁场各要素间的非线性关系 ,分析磁场分布不均匀性导致磁流变液中剪切力分布的变化 ,并对最具代表性的两平板间磁流变液传递剪切力的情况进行有限元分析 ,得出比较符合实际... 通过对磁流变液剪切传力机理的研究 ,充分考虑磁场饱和情况以及磁场各要素间的非线性关系 ,分析磁场分布不均匀性导致磁流变液中剪切力分布的变化 ,并对最具代表性的两平板间磁流变液传递剪切力的情况进行有限元分析 ,得出比较符合实际的结果。 展开更多
关键词 磁场分布不均匀性 磁流变液 剪切传力 磁场强度 有限元
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Heat transfer intensification in hydromagnetic and radiative 3D unsteady flow regimes: A comparative theoretical investigation for aluminum and γ-aluminum oxides nanoparticles 被引量:2
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作者 Naveed AHMED ADNAN +3 位作者 Umar KHAN Syed Zulfiqar Ali ZAIDI Imran FAISAL Syed Tauseef MOHYUD-DIN 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1233-1249,共17页
This article investigates the colloidal study for water and ethylene glycol based nanofluids.The effects of Lorentz forces and thermal radiation are considered.The process of non-dimensionalities of governing equation... This article investigates the colloidal study for water and ethylene glycol based nanofluids.The effects of Lorentz forces and thermal radiation are considered.The process of non-dimensionalities of governing equations is carried out successfully by means of similarity variables.Then,the resultant nonlinear nature of flow model is treated numerically via Runge-Kutta scheme.The characteristics of various pertinent flow parameters on the velocity,temperature,streamlines and isotherms are discussed graphically.It is inspected that the Lorentz forces favors the rotational velocity and rotational parameter opposes it.Intensification in the nanofluids temperature is observed for volumetric fraction and thermal radiation parameter and dominating trend is noted for γ-aluminum nanofluid.Furthermore,for higher rotational parameter,reverse flow is investigated.To provoke the validity of the present work,comparison between current and literature results is presented which shows an excellent agreement.It is examined that rotation favors the velocity of the fluid and more radiative fluid enhances the fluid temperature.Moreover,it is inspected that upturns in volumetric fraction improves the thermal and electrical conductivities. 展开更多
关键词 conventional fluids aluminum and γ-aluminum oxides magnetic field thermal radiation Runge-Kutta scheme shear stress local rate of heat transfer
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