Numerical investigation of the effect of ultrasound on paper drying

M. E. Asar, Z. Noori, J. Yagoobi
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Abstract

The paper drying process is very energy inefficient. More than two-thirds of the total energy used in a paper machine is for drying paper. Novel drying technologies, such as ultrasound (US) drying, can be assessed numerically for developing next-generation drying technologies for the paper industry. This work numerically illustrates the impact on drying process energy efficiency of US transducers installed on a two-tiered dryer section of a paper machine. Piezoelectric transducers generate ultrasound waves, and liquid water mist can be ejected from the porous media. The drying rate of handsheet paper in the presence of direct-contact US is measured experimentally, and the resultant correlation is included in the theoretical model. The drying section of a paper machine is simulated by a theoretical drying model. In the model, three scenarios are considered. In the first scenario, the US modules are positioned in the dryer pockets, while in the second scenario, they are placed upstream of the drying section right after the press section. The third case is the combination of the first and second scenarios. The average moisture content and temperature during drying, enhancement of total mass flux leaving the paper by the US mechanism, total energy consumption, and thermal effect of heated US transducers are analyzed for all cases. Results show that the application of the US can decrease the total number of dryer drums for drying paper. This numerical study is based on the US correlation obtained with the US transducer in direct contact with the paper sample. Thus, future work should include US correlation based on a non-contact US transducer.
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超声对纸张干燥影响的数值研究
纸张干燥过程非常低效。造纸机总能耗的三分之二以上用于干燥纸张。新型干燥技术,如超声(US)干燥,可以为造纸工业开发下一代干燥技术进行数值评估。这项工作数值说明了安装在纸机双层干燥器部分的美国换能器对干燥过程能源效率的影响。压电换能器产生超声波,液态水雾可以从多孔介质中喷射出来。实验测量了手写纸在直接接触介质存在下的干燥速率,并将由此产生的相关性包含在理论模型中。采用理论干燥模型对纸机的干燥过程进行了模拟。在该模型中,考虑了三种情况。在第一种情况下,US模块位于干燥机口袋中,而在第二种情况下,它们被放置在干燥部分的上游,就在压机部分之后。第三种情况是第一种和第二种情况的结合。分析了干燥过程中的平均含水率和温度、美国机制对纸张总质量通量的增强、总能耗和加热后的美国换能器的热效应。结果表明,使用US可以减少干燥纸的干燥滚筒总数。该数值研究是基于与纸样直接接触的US换能器获得的US相关性。因此,未来的工作应该包括基于非接触式美国传感器的美国相关。
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