In this study, numerical simulation methods employing the Swann-Pitman empirical formula were utilized to perform a steady-state fluid-thermal coupled analysis on an aluminum honeycomb sandwich panel. The findings indicated that the average temperature on the back fire surface deviated from experimental data by less than 15%. By ensuring computational accuracy, the utilization of the Swann-Pitman empirical formula enhances computational efficiency, making it valuable for investigating the thermal performance of aluminum honeycomb sandwich panels.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Numerical Study on the Temperature Distribution Characteristics of the Fire-Exposed Surface of Aluminum Honeycomb Sandwich Panels Under Flame Impingement and Rear Ventilation Conditions

  • Bin Wu,
  • Min Li,
  • Zhengliang Su,
  • Fei Xie,
  • Haitao Wu

摘要

In this study, numerical simulation methods employing the Swann-Pitman empirical formula were utilized to perform a steady-state fluid-thermal coupled analysis on an aluminum honeycomb sandwich panel. The findings indicated that the average temperature on the back fire surface deviated from experimental data by less than 15%. By ensuring computational accuracy, the utilization of the Swann-Pitman empirical formula enhances computational efficiency, making it valuable for investigating the thermal performance of aluminum honeycomb sandwich panels.