Predicting Effective Thermal Conductivity in Carbon Fibrous Media: Stochastic Modeling and Multi-Physics Simulation
编号:97访问权限:仅限参会人更新:2025-09-30 10:22:48浏览:4次口头报告
报告开始:2025年10月11日 15:00(Asia/Shanghai)
报告时间:15min
所在会场:[S2] Numerical micro/nanofluid dynamics and heat transfer [S3-2] Session 3-2: Computational heat transfer and fluid dynamics
暂无文件
提示
无权点播视频
提示
没有权限查看文件
提示
文件转码中
摘要
Fibrous media are widely utilized for insulating high-temperature industrial equipment due to their excellent high-temperature insulation performance. However, the multi-scale and heterogeneous structure of fibrous media poses considerable challenges for the accurate prediction of their thermal behavior. To overcome these challenges, this study proposes a stochastic algorithm for generating realistic fibrous media models. Compared to computed tomography (CT) techniques, the proposed method significantly reduces modeling costs and improves computational efficiency while preserving essential structural accuracy. Furthermore, Computational Fluid Dynamics (CFD) and the Monte Carlo method are combined to investigate the heat transfer characteristics of fibrous media. The effects of fiber surface emissivity, the degree of fiber arrangement disorder, and the number of fibers in contact with the hot and cold boundaries on the effective thermal conductivity are systematically examined. The results indicate that the effective thermal conductivity decreases monotonically with increasing fiber arrangement disorder. Additionally, both fiber surface emissivity and the number of boundary-contacting fibers show a positive correlation with effective thermal conductivity. The model's accuracy is validated against experimental data, with an average deviation between simulated and measured values below 15 %. This study establishes a theoretical framework for predicting thermal transport behavior in complex fibrous media.
关键词
Fibrous Media,3D stochastic geometry,Effective thermal conductivity,Radiation heat transfer
报告人
Chenglin Zhou
Lanzhou University of Technology, China
稿件作者
Li JunpengSchool of Petrochemical Engineering, Lanzhou University of Technology
zhou chenglinSchool of Petrochemical Engineering, Lanzhou University of Technology
Yan DiSchool of Petrochemical Engineering, Lanzhou University of Technology
Zhou LiqunSchool of Petrochemical Engineering, Lanzhou University of Technology
Zhao BowenSchool of Petrochemical Engineering, Lanzhou University of Technology
发表评论