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Modelling the flow of cane constituents through the milling process of a raw sugar factory

机译:通过原糖工厂的制粉过程对甘蔗成分的流动进行建模

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摘要

This thesis reports on an investigation to develop an advanced and comprehensive milling process model of the raw sugar factory. Although the new model can be applied to both, the four-roller and six-roller milling units, it is primarily developed for the six-roller mills which are widely used in the Australian sugar industry. The approach taken was to gain an understanding of the previous milling process simulation model "MILSIM" developed at the University of Queensland nearly four decades ago. Although the MILSIM model was widely adopted in the Australian sugar industry for simulating the milling process it did have some incorrect assumptions. The study aimed to eliminate all the incorrect assumptions of the previous model and develop an advanced model that represents the milling process correctly and tracks the flow of other cane components in the milling process which have not been considered in the previous models.ududThe development of the milling process model was done is three stages. Firstly, an enhanced milling unit extraction model (MILEX) was developed to access the mill performance parameters and predict the extraction performance of the milling process. New definitions for the milling performance parameters were developed and a complete milling train along with the juice screen was modelled. The MILEX model was validated with factory data and the variation in the mill performance parameters was observed and studied. Some case studies were undertaken to study the effect of fibre in juice streams, juice in cush return and imbibition% fibre on extraction performance of the milling process. It was concluded from the study that the empirical relations developed for the mill performance parameters in the MILSIM model were not applicable to the new model. New empirical relations have to be developed before the model is applied with confidence.ududSecondly, a soluble and insoluble solids model was developed using modelling theory and experimental data to track the flow of sucrose (pol), reducing sugars (glucose and fructose), soluble ash, true fibre and mud solids entering the milling train through the cane supply and their distribution in juice and bagasse streams.. The soluble impurities and mud solids in cane affect the performance of the milling train and further processing of juice and bagasse. New mill performance parameters were developed in the model to track the flow of cane components. The developed model is the first of its kind and provides some additional insight regarding the flow of soluble and insoluble cane components and the factors affecting their distribution in juice and bagasse. The model proved to be a good extension to the MILEX model to study the overall performance of the milling train.ududThirdly, the developed models were incorporated in a proprietary software package "SysCAD’ for advanced operational efficiency and for availability in the ‘whole of factory’ model. The MILEX model was developed in SysCAD software to represent a single milling unit. Eventually the entire milling train and the juice screen were developed in SysCAD using series of different controllers and features of the software. The models developed in SysCAD can be run from macro enabled excel file and reports can be generated in excel sheets. The flexibility of the software, ease of use and other advantages are described broadly in the relevant chapter. The MILEX model is developed in static mode and dynamic mode. The application of the dynamic mode of the model is still under progress.
机译:本文报道了一项调查,目的是开发一种先进而全面的原糖工厂制粉工艺模型。尽管新模型可以同时应用于四辊和六辊磨粉机,但它主要是为澳大利亚制糖业广泛使用的六辊磨粉机开发的。所采用的方法是要了解近四十年前在昆士兰大学开发的以前的铣削过程仿真模型“ MILSIM”。尽管MILSIM模型已在澳大利亚制糖业中广泛用于模拟制粉过程,但它确实有一些不正确的假设。该研究旨在消除先前模型的所有错误假设,并开发一种高级模型,该模型可以正确表示铣削过程并跟踪铣削过程中其他模型中未考虑的其他甘蔗成分的流动。铣削过程模型的开发完成了三个阶段。首先,开发了一种增强的铣削单位提取模型(MILEX),以访问铣削性能参数并预测铣削过程的萃取性能。制定了磨粉性能参数的新定义,并模拟了完整的磨粉机以及果汁筛。 MILEX模型已通过工厂数据验证,并观察和研究了轧机性能参数的变化。进行了一些案例研究,以研究汁液流中的纤维,汁液回流时的汁液和吸收率%的纤维对研磨过程的萃取性能的影响。从研究得出的结论是,在MILSIM模型中为轧机性能参数建立的经验关系不适用于新模型。 ud ud其次,利用建模理论和实验数据建立了可溶和不可溶固体模型,以追踪蔗糖(pol)的流动,还原糖(葡萄糖和果糖)的过程。 ),可溶的灰分,真纤维和泥固体通过甘蔗供应进入碾磨机,并在汁液和蔗渣流中分布。 。在模型中开发了新的轧机性能参数,以跟踪甘蔗成分的流动。所开发的模型尚属首次,它提供了有关可溶和不可溶甘蔗成分流动以及影响其在果汁和甘蔗渣中分布的因素的一些其他见解。该模型被证明是MILEX模型的良好扩展,用于研究铣削列车的整体性能。 ud ud第三,将开发的模型并入专有的软件包“ SysCAD”中,以提高操作效率并在“整个工厂模型。MILEX模型是在SysCAD软件中开发的,代表了一个铣削单元;最后,整个铣削列和果汁筛是使用一系列不同的控制器和软件功能在SysCAD中开发的。可以从启用宏的excel文件中运行,并可以在excel表格中生成报告,相关章节广泛地描述了软件的灵活性,易用性和其他优点。MILEX模型是在静态模式和动态模式下开发的。模型的动态模式的应用仍在进行中。

著录项

  • 作者

    Thaval Omkar P.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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