随时间变化的正弦磁场影响下的各向异性达西-布林克曼磁性流体对流

IF 0.6 Q4 PHYSICS, MULTIDISCIPLINARY Ukrainian Journal of Physics Pub Date : 2023-12-18 DOI:10.15407/ujpe68.11.730
C. Balaji, S. Maruthamanikandan, C. Rudresha, V. Vidya Shree
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引用次数: 0

摘要

利用正则扰动技术研究了涉及时间波动的磁场正弦模式对饱和渗透介质中铁磁智能液体对流阈值的影响。采用具有各向异性渗透性的达西-布林克曼模型来描述流经多孔介质的流动。热各向异性在能量方程中得以实现。这个问题在热工程应用(如动态扬声器和计算机硬盘)和医学应用(如肿瘤细胞治疗和细胞分离)中可能很有用。常规扰动技术基于磁场调制的最小振幅,而起始标准则根据临界瑞利数和波数修正来处理。热雷利数修正取决于磁场调制频率、磁力、各向异性、孔隙度和普朗特数。在中等磁场调制频率值下,各种物理因素的影响值得注意。磁机制、普朗特数、孔隙度参数和布林克曼数的影响表明,在中等调制频率值时,磁场调制的失稳效应会增强。然而,随着机械各向异性参数和热各向异性参数值的增加,磁场调制的失稳效应会减弱。研究表明,磁场调制效应可用于控制铁磁流体饱和的各向异性多孔介质中的对流不稳定性。
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Anisotropic Darcy–Brinkman Magnetic Fluid Convection under the Influence of a Time-Dependent Sinusoidal Magnetic Field
The impact of the sinusoidal mode of a magnetic field involving time fluctuations on the threshold of the ferromagnetic smart liquid convection in a saturated permeable medium is investigated using the regular perturbation technique. The Darcy–Brinkman model with anisotropic permeability is used to describe the flow through porous media. The thermal anisotropy is implemented in the energy equation. The problem might be useful in thermal engineering applications such as dynamic loudspeakers and computer hard discs and in medical applications like the treatment of tumor cells and the cell separation, to name a few. The regular perturbation technique is based on the minimum amplitude of a magnetic field modulation, and the onset criterion is dealt with in terms of a correction in the critical Rayleigh number and wavenumber. The thermal Rayleigh number correction depends on the magnetic field modulation frequency, magnetic force, anisotropies, porosity, and Prandtl number. At moderate values of the magnetic field modulation frequency, the impact of various physical factors is perceived to be noteworthy. The influences of the magnetic mechanism, Prandtl number, porosity parameter, and Brinkman number are shown to augment the destabilizing effect of the magnetic field modulation for moderate values of the frequency of a modulation. However, the destabilizing effect of the magnetic field modulation is diminished due to an increase in the values of the mechanical anisotropy parameter and thermal anisotropy parameter. The study reveals that the effect of the magnetic field modulation could be exploited to control the convective instability in an anisotropic porous medium saturated by a ferromagnetic fluid.
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来源期刊
Ukrainian Journal of Physics
Ukrainian Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.20
自引率
20.00%
发文量
244
期刊介绍: Ukrainian Journal of Physics is the general physics edition of the Department of Physics and Astronomy of the National Academy of Sciences of Ukraine. The journal publishes original papers and reviews in the fields of experimental and theoretical physics.
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