用锥形碰撞阵列从非牛顿泥浆中分离大颗粒的实验结果

J. Bamberger, L. Pease, Jason E. Serkowski, M. Minette, C. Burns
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摘要

横向位移阵列对于从载体流体中分离血细胞和沙子等颗粒非常有用。这些阵列由交错的柱子组成,这使得较小的颗粒可以沿着流线移动,而较大的颗粒可以绕着柱子流动并迁移到一侧。这种迁移增加了一个方向上的颗粒浓度,并减少了另一个方向上的颗粒浓度,从而使颗粒分离发生。采用锥形碰撞阵列对非牛顿屈服应力浆中的大颗粒进行了分离实验。所使用的非牛顿泥浆由膨润土高岭土混合和大直径颗粒的夹杂物组成。这些实验是为了评估在非牛顿屈服应力泥浆中使用交错柱的锥形阵列作为凹凸阵列的颗粒分离性能,这一应用尚未在实验中进行过探索。并叙述了这些实验的结果。这些信息可以应用于工业环境,例如从核废料浆中分离颗粒,包括在汉福德场址处理的颗粒,在那里,从废物流中去除大颗粒对处理很重要。
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Experimental Results for Large Particle Separation From Non-Newtonian Slurries Using Tapered Bump Arrays
Lateral displacement arrays are useful for separating particles such as blood cells and sand from carrier fluids. These arrays consist of staggered posts, which allow smaller particles to follow streamlines and larger particles to flow around the posts and migrate to one side. This migration increases the particle concentration in one direction and depletes the particle concentration in the other direction allowing particle separation to occur. Experiments were conducted to separate large particles in non-Newtonian yield stress slurries using tapered bump arrays. The non-Newtonian slurry used was composed of a bentonite kaolin blend with the inclusion of larger diameter particles. These experiments were conducted to evaluate the performance of particle separation using a tapered array of staggered posts as configured in a bump array for non-Newtonian yield stress slurries, an application that has not been explored experimentally. The results of these experiments are described. This information could be applied in industrial settings such as separation of particles from nuclear waste slurries including those to be processed at the Hanford site, where removing large particles from waste streams is important to processing.
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