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Comparative study on the performance of circular and elliptic cross-section matrices in axial high gradient magnetic separation: Role of the applied magnetic induction

机译:轴向高梯度磁分离中圆形和椭圆横截面基质性能的比较研究:应用磁感应的作用

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Experiments of circular and elliptic cylindrical matrices with the same cross-section area in the axial high gradient magnetic separation (HGMS) had been conducted previously. The results showed that the elliptic matrices present much better performance than the circular matrices at lower magnetic induction (< 0.35 T). However, previous theoretical analyses indicated that the capture efficiency of the circular and elliptic matrices were almost the same. A very important factor was not considered in the theoretical analyses, namely the applied magnetic induction Almost all the theoretical studies concerning the basic principles of HGMS in the past were based on the premise that the matrices were saturated by the magnetic field. In the present paper, particle capture behaviors of the circular and elliptic matrices in the axial HGMS were studied with varying the magnetic field. The generic particle motion equations were derived and the particle capture cross sections of the matrices were compared, for both the case that the matrices were unsaturated and saturated by the magnetic field. The results showed that capture behavior of the circular and elliptic matrices were magnetic field dependent. The absolute difference of the particle capture cross section area between the circular and elliptic matrices increases first and then decreases with the increase of magnetic induction (0.1-0.8 T). The capture cross section area of the elliptic matrix can be 1.25-1.6 times larger than that of the circular matrix within a moderate induction range. In high magnetic induction, the capture cross section area of the circular and elliptic matrices is almost the same. The analyses provide explanation for the conflict in previous publications and reveal the good magnetic characteristics of the elliptic matrix and its promising application prospect in HGMS.
机译:先前已经进行了在轴向高梯度磁分离(HGMS)中具有相同横截面区域的圆形和椭圆圆柱矩阵的实验。结果表明,椭圆矩阵比较低磁感应下的圆形矩阵更好地存在更好的性能(<0.35t)。然而,先前的理论分析表明圆形和椭圆矩阵的捕获效率几乎相同。在理论分析中不考虑一个非常重要的因素,即应用磁诱导几乎所有关于过去HGMS基本原理的理论研究基于磁场饱和基质饱和的前提。在本文中,研究了轴向HGMS中的圆形和椭圆矩阵的颗粒捕获行为,随着磁场而改变。衍生通用粒子运动方程,并比较基质的粒子捕获横截面,对于基质不饱和和磁场饱和的情况。结果表明,圆形和椭圆矩阵的捕获行为依赖于磁场。圆形和椭圆矩阵之间的粒子捕获横截面区域的绝对差异首先增加,然后随着磁感应的增加而降低(0.1-0.8 t)。椭圆矩阵的捕获截面区域可以比中等感应范围内的圆形矩阵大的1.25-1.6倍。在高磁感应中,圆形和椭圆矩阵的捕获横截面面积几乎是相同的。分析为先前出版物的冲突提供了解释,并揭示了椭圆矩阵的良好磁特性及其在HGMS中的良好应用前景。

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