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Lattice Boltzmann Simulation of Ferrofluid Structure

机译:格索流体结构的格子玻璃板模拟

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By means of the lattice-Boltzmann (LB) method, the mesoscaled structure of ferrofluids consisting of magnetic nanoparticles and a carrier fluid as well as some surfactant is investigated. The ferrofluid is a complicated system and its morphology is affected by a number of internal and external forces including gravitational force, Brownian force, van der Waals attraction potential, and dipolc-dipole interaction potential. All these factors arc included in the lattice-Boltzmann model. The distribution of suspended magnetic nanoparticles and morphology of the ferrofluid are simulated in both cases of the absence and the presence of an external magnetic field. The effects of the dipole-dipole interaction energy and the thermal energy on the aggregation structures of the magnetic nanoparticles are discussed.
机译:借助于晶格 - 玻璃晶(LB)方法,研究了由磁性纳米颗粒和载体流体组成的铁磁流体的思科结构以及一些表面活性剂。 Ferrofluid是一种复杂的系统,其形态受到许多内部和外力的影响,包括重力,布朗力,范德华吸引力和Dipolc-偶极相互作用电位。 所有这些因素弧包含在格子-Boltzmann模型中。 两种情况下,模拟了悬浮磁性纳米颗粒的分布及其在不存在的情况下和外部磁场的存在。 讨论了偶极 - 偶极相互作用能量和热能对磁性纳米颗粒的聚集结构的影响。

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