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MODELING AND DESIGN OF AN INDUSTRIAL DRYER WITH CONVECTIVE AND RADIANT HEATING

机译:对流辐射采暖工业干燥机的建模与设计

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摘要

Industrial equipment for drying polymeric coatings normally consists of a series of zones, each with a controlled temperature and airflow. Drying of a polymer-solvent solution is strongly affected by the variation of diffusivity, solvent vapor pressure, and solvent activity with temperature and composition. The equations of mass transfer by diffusion and of heat transfer by conduction and radiation describe changes in composition and temperature within the shrinking coating. This system of equations is solved by Galerkin's method with finite element basis functions. The boundary conditions on dryer airflow and temperature change at the entrance to each zone. In a few test cases, the predictions show how evaporative cooling can slow drying in early zones where the coating temperature drops below the dryer temperature, whereas in later zones the coating temperature rapidly approaches the dryer temperature. Infrared heating can be used to reduce the extent of evaporative cooling. In the test cases and experiments, ''blistering'' occurs in later zones where high oven temperature causes the solvent partial pressure to rise; dryer parameters can be chosen to maintain solvent partial pressure just below ambient pressure in order to avoid ''blistering'' with least sacrifice of process speed. (C) 1995 John Wiley & Sons, Inc. [References: 25]
机译:用于干燥聚合物涂料的工业设备通常由一系列区域组成,每个区域的温度和气流均受控。聚合物溶剂溶液的干燥受扩散度,溶剂蒸气压以及溶剂活性随温度和组成的变化的强烈影响。通过扩散进行的质量转移和通过传导与辐射的热转移等式描述了收缩涂层内成分和温度的变化。该方程组由具有有限元基函数的Galerkin方法求解。干燥机气流和温度变化的边界条件在每个区域的入口处发生变化。在一些测试案例中,预测表明,蒸发冷却如何在涂层温度降至干燥机温度以下的早期区域中减慢干燥速度,而在较晚的区域中,涂层温度迅速接近干燥器温度。可以使用红外加热来减少蒸发冷却的程度。在测试用例和实验中,“鼓泡”发生在较高的炉温导致溶剂分压升高的较晚区域。可以选择干燥机参数以将溶剂分压保持在略低于环境压力的水平,从而避免“起泡”,同时以最小的工艺速度牺牲。 (C)1995 John Wiley&Sons,Inc. [参考:25]

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