论文标题
在定期驱动的颗粒堆流中建模分层分离
Modeling Stratified Segregation in Periodically Driven Granular Heap Flow
论文作者
论文摘要
我们提出了一种连续方法,以模拟不稳定界面堆流中尺寸 - 塑料颗粒材料的分离,作为在其他时间变化的流动中建模隔离的原型。在实验中,定期调制的进料速率会产生分层的分离,例如由于间歇性雪崩而发生的,除了较高的层均匀性和更高的平均饲料速率。使用对流扩散 - 隔离方程并表征饲料率变化后沉积和侵蚀的瞬态变化,我们为不同的饲料速率和周期建模分层。堆流中的进料率调制可以产生良好的分离层,从而有效地将沉积的材料与自由表面的垂直于自由表面的长度混合,其长度大于组合的层厚度。这可以减轻强烈的流偏分离,否则会以较大的颗粒大小比和等效的稳定饲料速率发生,并且可以显着降低料斗放电期间的浓度变化。耦合分离,沉积和侵蚀是具有挑战性的,但具有许多潜在的应用。
We present a continuum approach to model segregation of size-bidisperse granular materials in unsteady bounded heap flow as a prototype for modeling segregation in other time varying flows. In experiments, a periodically modulated feed rate produces stratified segregation like that which occurs due to intermittent avalanching, except with greater layer-uniformity and higher average feed rates. Using an advection-diffusion-segregation equation and characterizing transient changes in deposition and erosion after a feed rate change, we model stratification for varying feed rates and periods. Feed rate modulation in heap flows can create well-segregated layers, which effectively mix the deposited material normal to the free surface at lengths greater than the combined layer-thickness. This mitigates the strong streamwise segregation that would otherwise occur at larger particle-size ratios and equivalent steady feed rates and can significantly reduce concentration variation during hopper discharge. Coupling segregation, deposition and erosion is challenging but has many potential applications.