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Dynamic Modelling of Temperature in a Wet Ball Mill Based on Integrated Energy-Mass-Size Balance Approach

机译:基于能量-质量-尺寸平衡综合方法的湿式球磨机温度动态建模

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This paper presents a dynamic model of mill temperature that could be used alongside mill conventional control systems to provide indications of changes in mill slurry solids concentration and by extension the slurry holdup and mill mixing behaviour based on in-mill temperature profile. The model combines information of energy and mass balance, material breakage mechanisms, fundamental material properties and the milling conditions in a simple and clear representation of the physics and thermodynamics of the wet milling process. Model tests at steady state conditions using industrial mill data show a closer match between measured and predicted temperatures. The test results depicting the dynamic response of the model show clear sensitivity of in-mill temperature to perturbations in the mill slurry solids concentration and solids feed rate. The trends in the milling data from the model simulations corroborate long held believe that mixing is better at lower slurry solids concentration. Overall, the results are indicative of the available potential to improve the accuracy of the conventional mill monitoring and control schemes based on information extracted from in-mill temperature profile.
机译:本文介绍了一个动态的磨粉机温度模型,该模型可与磨粉机常规控制系统一起使用,以提供磨粉机泥浆固体浓度变化的指示,并根据磨粉机内的温度曲线扩展磨粉料的滞留量和磨粉机的混合行为。该模型结合了能量和质量平衡,材料破坏机理,基本材料特性和研磨条件的信息,以简单,清晰的方式表示了湿磨过程的物理和热力学。使用工业轧机数据在稳态条件下进行的模型测试显示,实测温度与预测温度之间的匹配度更高。描述模型动态响应的测试结果表明,工厂内温度对工厂浆料固体浓度和固体进料速率的扰动具有明显的敏感性。来自模型模拟的研磨数据趋势证实了长期存在的观点,即在较低的浆料固体浓度下混合效果更好。总体而言,结果表明,根据从轧机内温度曲线中提取的信息,可以提高传统轧机监控方案的准确性。

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