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首页> 外文期刊>International journal of chemical engineering >Comparison of the Accuracy and Performance of Different Numbers of Classes in Discretised Solution Method for Population Balance Model
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Comparison of the Accuracy and Performance of Different Numbers of Classes in Discretised Solution Method for Population Balance Model

机译:人口平衡模型离散求解方法中不同类数的准确性和性能比较

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摘要

One way of solving population balance model (PBM) in a time efficient way is by means of discretisation of the population property of interest. A computational grid, for example, v_(i+1) = kv_i (v_i is the volume of particle in class i), could be used to classify the particles in discretisation techniques. However, there are still disagreements in the appropriate number of classes divided by the grids. In this study, the different numbers of classes for solving PBM were compared in terms of accuracy and performance to describe the particle size distribution (PSD) from the flocculation of activated sludge. It is found that the simulated PSDs are similar to the experimental data for all the geometric grids (v_(i+1) : v_i ≤ 2), and there is no obvious difference among the values of calibrated parameter, ratio of breakage rate coefficient and collision efficiency, for each velocity gradient. However, the simulation results with less error could be obtained with larger number of classes, and more computational times, which show exponential relationship with the number of classes, are needed. Considering numerical accuracy and efficiency, the classes 35 or a geometric grid with factor 1.6, aligning with the Fibonacci sequence (v_i + v_(i-I) ≈ v_(i+1)), is recommended for the particles in the size range of 5.5~1086 μm.
机译:一种以时间有效的方式解决人口平衡模型(PBM)的方法是通过离散化感兴趣的人口属性。计算网格,例如v_(i + 1)= kv_i(v_i是类别i中的粒子体积),可用于在离散化技术中对粒子进行分类。但是,在划分网格的适当数量的类上仍然存在分歧。在这项研究中,从准确性和性能方面比较了用于解决PBM的不同类别,以描述活性污泥絮凝的粒径分布(PSD)。结果表明,所有几何网格(v_(i + 1):v_i≤2)的仿真PSD与实验数据相似,且校正参数值,破损率系数和破损率之间无明显差异。每个速度梯度的碰撞效率。但是,通过增加类别数可以获得模拟结果误差较小的仿真结果,并且需要更多的计算时间来显示与类别数的指数关系。考虑到数值精度和效率,建议对尺寸范围为5.5〜的粒子使用与Fibonacci序列(v_i + v_(iI)≈v_(i + 1))对齐的类35或因子为1.6的几何网格。 1086微米

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