Simulation for Optimization of a Filter Cake System

A. Johnson, Allison LeBleu, Ning Zhang
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Abstract

The purpose of this project is to create a computational fluid dynamics (CFD) simulation of the cake filtration process for Agrilectric Research. Cake filtration is the process by which solid particulate is filtered out of a mixture of fluid and solid phases. As the mixture flows through the system, the particulate accumulates on a filter cloth to form a filter cake, which acts as an added filtering medium to the system. The results obtained from this project can be used to aid Agrilectric in the development of their experimental testing methods by providing the ability to measure and predict filtration properties and to experiment with different filter cake designs to improve filtration methods and performance, without reliance on empirical data. The work was completed using the Workbench platform with the Fluent solver from the Ansys Student software bundle. A 20 cm long, 10 cm diameter filter cell was modeled and meshed through Workbench and was imported into Fluent to conduct the simulation. The flow of a mixture of water and a particulate phase of rice hull ash (RHA) was simulated using the Eulerian multiphase model. This would show the movement of the RHA through the system and the accumulation of the particulate on a filter cloth over time. The filter cloth was modeled using a porous cell zone to mimic filtering properties. The simulated solution shows RHA flowing into the system and initially passing through the filter cloth. After some time, a packed layer of particulate forms across the width of the filter cloth that allows a filter cake to accumulate in the system. The results from the multiphase simulation prove that with more research and simulation development, the model can be improved to represent a realistic cake filtration system which can be used to supplement or to replace existing laboratory testing.
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滤饼系统优化仿真研究
本项目的目的是为农电研究创建饼过滤过程的计算流体动力学(CFD)模拟。滤饼过滤是从流体和固相的混合物中过滤出固体颗粒的过程。当混合物流过系统时,颗粒积聚在滤布上形成滤饼,滤饼作为系统的附加过滤介质。从这个项目中获得的结果可以用来帮助agrilelectric开发他们的实验测试方法,通过提供测量和预测过滤性能的能力,并实验不同的滤饼设计来改进过滤方法和性能,而不依赖于经验数据。该工作使用Workbench平台和Ansys Student软件包中的Fluent求解器完成。通过Workbench对长20 cm、直径10 cm的过滤单元进行建模和网格划分,并导入到Fluent中进行仿真。采用欧拉多相模型对稻壳灰颗粒相与水的混合流动进行了数值模拟。这将显示RHA通过系统的运动和随着时间的推移在滤布上积累的颗粒。采用多孔细胞区模拟滤布的过滤特性。模拟结果显示,RHA进入系统并最初通过滤布。一段时间后,在滤布的宽度上形成一层颗粒,使滤饼在系统中积累。多相仿真结果表明,随着研究和仿真的不断深入,该模型可以得到进一步的改进,以反映一个真实的滤饼过滤系统,可以作为现有实验室测试的补充或替代。
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