| タイトル | On the structure of gaseous confined laminar diffusion flames: Numerical investigation |
| 本文(外部サイト) | http://hdl.handle.net/2060/19930012009 |
| 著者(英) | Mawid, M. A.; Bulzan, D. L.; Aggarwal, S. K. |
| 著者所属(英) | NASA Lewis Research Center |
| 発行日 | 1993-02-01 |
| 言語 | eng |
| 内容記述 | The structure and characteristics of gaseous confined laminar diffusion flames are investigated by numerically solving the time-dependent two-dimensional axisymmetric conservation equations. The numerical model accounts for the important chemical and physical processes involved, including axial diffusion, viscous effects, radial convection, and finite-rate chemistry. The numerical results clearly show that the flame has a finite thickness and leakage of fuel vapor into the flame zone is possible. The effect of heat release is found to induce some radial flow. Predicted flame shape and dimensions are compared to the classical Burke-Schumann flame. The numerically calculated flame is observed to be about 15 percent taller and 5 percent narrower than that of the Burke-Schumann solution under the same conditions. |
| NASA分類 | FLUID MECHANICS AND HEAT TRANSFER |
| レポートNO | 93N21198 NASA-TM-106039 E-7613 NAS 1.15:106039 ICOMP-93-3 |
| 権利 | No Copyright |