首页> 外文期刊>International Journal of Multiphase Flow >Capillary flow of a suspension of non-magnetic particles in a ferrofluid under highly non-uniform magnetic field
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Capillary flow of a suspension of non-magnetic particles in a ferrofluid under highly non-uniform magnetic field

机译:在高度均匀的磁场下,在铁磁流体中的非磁性颗粒悬浮液的毛细管流动

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摘要

When a ferromagnetic suspension flows through a capillary placed between two small strong permanent magnets, the magnetic force acts upon the non-magnetic (silica) particles dispersed in a ferrofluid and they tend to be extruded from the zone of high magnetic field. Particles get concentrated at the entrance section between magnets and form a plug. The increase of hydraulic resistance is due to the relative motion between particulate and ferrofluid phases in the presence of a field. If we keep the pressure difference constant, the flow rate will decrease when the field is applied and can eventually completely stop. In order to restart the flow a pressure difference, high enough to push the silica plug out of the capillary, is needed. The critical pressure of the flow blockage is nearly two times less than the pressure of the flow onset, both pressures being independent of the particle concentration in the suspension (except for near zero concentration). Such hysteresis of the flow onset/blockage has also been predicted in the frame of the proposed two-phase flow model, which has been used to calculate steady-state concentration profiles and discharge characteristics.
机译:当铁磁悬浮液流通过放置在两个小强永久磁体之间的毛细管时,磁力作用在分散在铁磁流体中的非磁性(二氧化硅)颗粒上,并且它们倾向于从高磁场区域挤出。颗粒在磁铁之间的入口部分浓缩并形成插头。液压阻力的增加是由于颗粒状和铁物流体相之间存在的相对运动。如果我们保持压力差常数,则在施加该场并且最终可以完全停止时,流速将减少。为了重新开始流量,需要足够高以推动毛细管的二氧化硅插头。流量堵塞的临界压力比流动发作的压力差的几乎是少的两倍,两种压力与悬浮液中的颗粒浓度无关(除零浓度除外)。在所提出的两相流模型的框架中还预测了流量/堵塞的这种滞后,该帧已经用于计算稳态浓度分布和放电特性。

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