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首页> 外文期刊>Journal of Cleaner Production >Model-based direct search optimization of the broke recirculation system in a newsprint mill
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Model-based direct search optimization of the broke recirculation system in a newsprint mill

机译:新闻纸厂破损再循环系统的基于模型的直接搜索优化

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摘要

This work is concerned with the dynamic modelling of the papermaking section of an integrated newsprint mill, and the subsequent application of two direct search methods in a proof-of-concept optimization study of broke recirculation strategies. The effect of the current broke recirculation policy on the mixed pulp properties at the paper machine headboxes was quantified using a dynamic simulation generating data for an objective function which reflected the rate of change in measurable (flow, consistency and temperature) and immeasurable (total dissolved solids and fibre length distribution) parameters. Genetic Algorithm and the Nelder—Mead simplex methods were then linked dynamically to the simulation and used to find improved ways of recirculating broke pulp. Specifically, the profile of the changes to the broke ratio was modelled using a quadratic function and a second-order transfer function, and the coefficients of these functions were optimized. The optimized broke recirculation resulted in a significant reduction in the value of the objective function, thus, suggesting that the fluctuations in the properties of the mixed pulp stream could be dampened and paper machine headbox stability improved. It is expected that this process enhancement strategy would contribute to an increase in production yield (via a reduction in the occurrence of paper machine breaks), and thus an overall reduction in the waste of materials and energy.
机译:这项工作涉及综合新闻纸厂的造纸部分的动态建模,以及两种直接搜索方法在破碎再循环策略的概念验证优化研究中的后续应用。电流中断再循环策略对造纸机流浆箱中混合纸浆性能的影响通过动态模拟生成,该模拟生成目标函数的数据,该函数反映可测量(流量,稠度和温度)和不可测量(总溶解量)的变化率固体和纤维长度分布)参数。然后,将遗传算法和Nelder-Mead单纯形方法动态地与模拟联系起来,并用于找到改进的破碎纸浆再循环方法。具体而言,使用二次函数和二次传递函数来模拟破损率的变化曲线,并优化这些函数的系数。优化的破损再循环导致目标函数的值显着降低,因此,表明可以减少混合浆流特性的波动,并改善了造纸机流浆箱的稳定性。可以预期,这种工艺增强策略将有助于提高产量(通过减少造纸机中断的发生),从而总体上减少材料和能源的浪费。

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