| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 662678 | International Journal of Heat and Mass Transfer | 2008 | 14 Pages | 
Abstract
												Following an analysis of surface roughness features that develop on a 3D C/C composite during ablation, i.e. wall recession by oxidation and/or sublimation, a modeling strategy is set up in order to predict the composite behavior from that of its components. It relies on two changes of scale: (i) microscopic scale (fiber, matrix) to mesoscopic scale (bundle) and (ii) mesoscopic scale (bundle, matrix) to macroscopic scale (composite). The physical basis is a general model for receding surfaces under a gasification process coupled to mass transfer. At each scale, the 3D surface equation is analytically solved in steady state considering a 1-D mass transfer perpendicular to the overall surface. The models are validated by comparison to experimental data.
											Related Topics
												
													Physical Sciences and Engineering
													Chemical Engineering
													Fluid Flow and Transfer Processes
												
											Authors
												Jean Lachaud, Yvan Aspa, Gérard L. Vignoles, 
											