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Thermal behavior of solid particles at ignition: Theoretical limit between thermally thick and thin solids

机译:固体颗粒在着火时的热行为:厚固体和稀固体之间的理论极限

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摘要

This paper deals with thermal behaviors of solid particles at ignition in attempting to theoretically delineate transition between thermally thick and thin behavior when a solid target is exposed to a radiant heat flux. In order to evaluate classical asymptotic relation accuracy and limiting range, models are developed for finite-depth target in both Cartesian and cylindrical coordinates, allowing to enhance asymptotic relations. Comparison between finite-depth target solutions and asymptotic solutions finally provides a mapping which allows the suited relation for ignition time calculation to be determined, regarding ignition conditions. This mapping then suggests some interesting consequences on forest fuel ignition and fire propagation modeling, since asymptotic models seem to overlap on large regions.
机译:本文研究了点火时固体颗粒的热行为,以试图从理论上描绘出当固体靶材暴露于辐射热通量时,热厚行为与薄行为之间的过渡。为了评估经典渐近关系的准确性和极限范围,针对笛卡尔坐标系和圆柱坐标系中的有限深度目标开发了模型,从而增强了渐近关系。有限深度目标解与渐近解之间的比较最终提供了一个映射,该映射允许确定关于点火条件的点火时间计算的合适关系。然后,由于渐近模型似乎在大区域上重叠,因此此映射建议了对森林燃料点火和火势传播建模的一些有趣结果。

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