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Semi-empirical full cycle optimisation of fill, squeeze and blow plate and frame pressure filters

机译:填充,挤压和吹气板框压力过滤器的半经验式全周期优化

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摘要

Investigation of the response of plate and frame filter performance to changes in design and operating variables is complicated by the large matrix of potential variables and the inter-dependent kinetics of the fill, press and air blow stages. However, through some key simplifying constraints an integrated optimisation framework has been developed. An example application is presented for an iron ore fines material from the North West of Australia, which indicates an optimum filling duration exists for all conditions investigated and illustrates the throughput benefits of higher feed solids and pressing pressures and larger cavity thicknesses. Significantly, the optimum filling duration is not constant and depends on the ratio of pressing to filling pressure and cavity thickness employed, largely due to the important role of the pressing stage not from the perspective of compression, but rather from that of an increased rate of secondary filtration of unfiltered suspension remaining at the end of the filling stage. Although simplistic in the form presented and limited to incompressible systems, with the integration of more rigorous theoretical treatments of the individual filter stages, the applicability of the approach could be broadened to all types of substrates.
机译:由于潜在变量的大矩阵以及填充,压榨和吹气阶段的相互依赖的动力学,使得对板框过滤器性能对设计和操作变量变化的响应的研究变得复杂。但是,通过一些关键的简化约束,已经开发了集成的优化框架。以澳大利亚西北部的铁矿粉为例,给出了一个示例应用程序,该示例表明在所有调查条件下均存在最佳填充时间,并说明了较高的进料固体和压制压力以及较大的型腔厚度对生产量的好处。重要的是,最佳的填充持续时间不是恒定的,并且取决于压紧与填充压力的比率以及所采用的模腔厚度,这主要是由于压紧阶段的重要作用不是从压缩的角度而是从增加压紧的角度考虑的。在填充阶段结束时,对未过滤的悬浮液进行二次过滤。尽管所呈现的形式简单且限于不可压缩的系统,但由于对各个过滤器级进行了更为严格的理论处理,该方法的适用性可扩展到所有类型的基底。

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