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Fe3O4-H2O nanofluid natural convection in presence of thermal radiation

机译:存在热辐射的Fe3O4-H2O纳米流体自然对流

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Impacts of magnetic field and thermal radiation on Fe3O4-H2O nanofluid hydrothermal behavior are investigated. Constant heat flux condition is taken into account for inner wall. Innovative numerical method is chosen namely Control volume based finite element method. Influences of radiation parameter (Rd), Rayleigh (Ra), Hartmann (Ha) numbers and volume fraction of Fe3O4-H2O (phi) on hydrothermal treatment are shown graphically. Results reveal that impact of thermal radiation on convection heat transfer is more sensible for higher buoyancy forces. Thermal boundary layer thickness augments with rise of Rd, Ha while it reduces with rise of Ra, phi. Nanofluid velocity reduces with augment of Hartmann number but it enhances with augment of radiation parameter. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了磁场和热辐射对Fe3O4-H2O纳米流体水热行为的影响。内壁考虑到恒定的热通量条件。选择了创新的数值方法,即基于控制体积的有限元方法。以图形方式显示了辐射参数(Rd),瑞利(Ra),哈特曼(Ha)数和Fe3O4-H2O(phi)的体积分数对水热处理的影响。结果表明,对于较高的浮力,热辐射对对流换热的影响更为明显。热边界层厚度随着Rd,Ha的升高而增加,而随着Ra,phi的升高而减小。纳米流体速度随着Hartmann数的增加而降低,但随着辐射参数的增加而提高。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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