基于计算流体动力学方法分析香烟的参数不稳定性
Jiaxin Wei1, Hui Xiao1, Xiaoming Wang1
1Xuchang Cigarette Factory of Henan Zhongyan Industry Co., Ltd, Xuchang, 461001, China.
香烟的通风率和吸烟阻力波动源于组件多孔性的变化. 影响这些因素的关键因素包括过器拖,切割烟草和纸质多孔性,这对于流程优化至关重要.
科学领域:
- 烟草科学 烟草科学
- 材料工程 材料工程 材料工程
- 流体动力学 流体动力学
背景情况:
- 香烟的生产在通风率和耐吸性方面表现出显著的变化.
- 这些波动通常与通风孔数量和材料多孔性的不一致有关.
研究的目的:
- 调查组件孔隙度变化的影响对香烟通风率和吸烟耐药性的影响.
- 确定导致这些关键香烟参数波动的主要因素.
主要方法:
- 运用计算流体动力学 (CFD) 模拟来分析微小的孔径变化的影响.
- 分析的重点是联合纸张通风孔的影响,过器拖,切割烟草,香烟纸,包装纸,和造型纸的孔隙性.
主要成果:
- 由于粘合而导致的通风孔有效数量的变化对生产级通风和阻力的影响最小.
- 吸烟阻力主要受到过器和切割烟草部分的结构参数的影响.
- 香烟纸和包装纸的多孔度与通风率呈正相关,而切割烟草和过纸的多孔度显示出负相关性.
- 造型纸对通风率的影响最小.
结论:
- 组件的多孔性,特别是过烟草和切割烟草的多孔性,显著影响吸烟阻力和通风.
- 优化香烟纸和包装纸的多孔性可以提高通风率.
- 这些发现为优化香烟制造工艺和稳定通风率提供了基础.
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