| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 8146070 | Infrared Physics & Technology | 2018 | 21 Pages | 
Abstract
												The dynamic modeling of infrared (IR) smoke plays an important role in IR scene simulation systems and its accuracy directly influences the system veracity. However, current IR smoke models cannot provide high veracity, because certain physical characteristics are frequently ignored in fluid simulation; simplifying the discrete phase as a continuous phase and ignoring the IR decoy missile-body spinning. To address this defect, this paper proposes a dynamic modeling method for IR smoke, based on an enhanced discrete phase model (DPM). A mathematical simulation model based on an enhanced DPM is built and a dynamic computing fluid mesh is generated. The dynamic model of IR smoke is then established using an extended equivalent-blackbody-molecule model. Experiments demonstrate that this model realizes a dynamic method for modeling IR smoke with higher veracity.
											Keywords
												
											Related Topics
												
													Physical Sciences and Engineering
													Physics and Astronomy
													Atomic and Molecular Physics, and Optics
												
											Authors
												Zhendong Zhang, Chunling Yang, Yan Zhang, Hongbo Zhu, 
											