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Upward Flame Spread and Extinction over Wavy Solids

机译:向上火焰蔓延和灭绝波浪固体

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Laboratory scale experimental and modeling results of one-sided upward flame spread over wavy cellulosic paper samples are presented. The sinusoidal shaped samples with varying wavelength and amplitude are aligned perpendicular to the gravitational direction so the upward buoyant flow sees peaks and valleys along its flow path. Depending on the wave amplitude and wavelength, the flame can spread from sample peak to peak initially but may later sustain slow burning from isolated flamelets inside the sample valleys or become quenched. The degree of fuel burning completeness, pyrolysis front spread rate, and extinction limits (both local and overall) depend on the wavy parameters in a complex way as well as the ambient relative humidity. Flame spread over wavy samples thus has unique features not found in continuous flat samples nor in discrete samples. Video records of the experiments supplied in the paper present both the front and the side views of these interesting transient flame developments. A simplified two-dimensional numerical model was formulated and solved to show selected salient features of the complex fluid dynamics over wavy structure and the heat transfer and burning characteristics of the wavy samples.
机译:提出了一种侧面向上火焰在波浪纤维素纸样品上铺平片状向上火焰的实验室规模的实验和建模结果。具有不同波长和幅度的正弦状样品垂直于重力方向对准,使得向上浮力流动沿其流动路径看到峰和谷。根据波浪幅度和波长,火焰可以最初从样品峰散到峰值,但可能后来可以维持来自样品谷内的分离的挥动物的缓慢燃烧或变得淬火。燃料燃烧完整度,热解展开率和消光限制(局部和整体)的程度取决于波状参数,以复杂的方式以及环境相对湿度。因此,火焰在波浪样本上传播,因此在连续平面样本中没有发现独特的特征,也不存在离散样品。本文提供的实验的视频记录在这些有趣的瞬态火焰开发的前面和侧视图中存在。制定了简化的二维数值模型,并解决了在波浪结构上显示复杂流体动力学的选定突出特征和波浪样本的热传递和燃烧特性。

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