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首页> 外文期刊>Drying technology: An International Journal >Simulation of Water Removal in Paper Based on a 2D Level-Set Model Coupled with Volume Forces Representing Fluid Resistance in 3D Fiber Distribution
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Simulation of Water Removal in Paper Based on a 2D Level-Set Model Coupled with Volume Forces Representing Fluid Resistance in 3D Fiber Distribution

机译:基于二维水平集模型和表示3D纤维分布中流体阻力的体积力的纸上除水模拟

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摘要

A numerical model of a vacuum dewatering process was established with a level-set method to simulate two-phase flow in a two-dimensional paper sheet model with constructed volume forces representing flow resistance in a three-dimensional environment. Nine cases of various volume force representations were investigated by comparing numerical and experimental data. Based on the dry content and dwell time relation, the best model is obtained when accounting for in-plane flow resistance at the paper-wire interface. Compared to the other numerical cases, considering the blockage of the pore space, the top layer of the wire plays an essential role in determining the flow resistance during the vacuum process. To validate the maximum dewatering rate obtained in the model, new experimental data with a higher frequency of sampling are needed.The computational time for the two-phase flow models in this study is extensively reduced due to the removal of the internal structure. This distinction enables time-efficient simulations of the vacuum dewatering process in which several dewatering parameters such as the level of the vacuum, the influence of a moving vacuum pulse, and higher basis weights could be investigated.
机译:利用水平集方法建立了真空脱水过程的数值模型,以模拟二维纸张模型中的两相流动,其中构造的体积力代表了三维环境中的流动阻力。通过比较数值和实验数据,研究了9种不同体积力表示形式的案例。基于干含量和停留时间的关系,考虑到纸线界面的平面内流动阻力时,可获得最佳模型。与其他数值情况相比,考虑到孔隙的阻塞,金属丝的顶层在确定真空过程中的流动阻力方面起着至关重要的作用。为了验证模型中获得的最大脱水率,需要具有更高采样频率的新实验数据。由于去除了内部结构,本研究中的两相流模型的计算时间大大减少了。这种区别使得可以对真空脱水过程进行省时的仿真,其中可以研究几个脱水参数,例如真空度,移动真空脉冲的影响以及更高的定量。

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