间歇式纸浆消化器纤维变形的模型预测控制

Juyeong Jung, Hyun-Kyu Choi, S. Son, Joseph Sang-Il Kwon, J. Lee
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引用次数: 0

摘要

由于全球气候变暖,减少温室气体排放已成为当务之急,轻量化包装技术已成为纸浆和造纸行业的新兴领域。与传统包装材料相比,有效利用纸浆是一个挑战。在卡夫烹饪过程中,木材纤维发生化学和物理变化,导致最终使用纸张的强度特性发生变化。因此,本研究采用经典柱曲理论建立多尺度模型,对纸浆消化器内纤维的变形进行了研究。然后,利用高保真模型的近似模型,设计了一种模型预测控制系统,以调节纤维在制浆过程中的变形。最后,与传统制浆工艺相比,基于多尺度模型的控制系统实现了对纤维变形的抑制,这标志着最终用纸的抗拉强度得到了提高。
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Model predictive control of fiber deformation in a batch pulp digester
As the reduction of greenhouse gas emissions is an imperative issue due to global warming, the technologies of lightweight packaging have become an emerging field in the pulp and paper industry. Efficient use of pulp is one challenge while being comparable to conventional packaging materials. During Kraft cooking, both the chemical and physical changes on the wood fibers occur, causing strength properties changes in end-use papers. Accordingly, in this study, the fiber deformation in a pulp digester is elucidated by developing the multiscale model with the classical column buckling theory. Subsequently, in order to regulate the fiber deformation during pulping, a model predictive control system is designed by utilizing an approximate model taken from the high-fidelity model. In the end, the multiscale model-based control system accomplished suppressing fiber deformations compared to the conventional pulping manufacturing, which signifies the achievement of improved tensile strength on end-use paper.
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