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HEAT LOSS ANALYSIS OF FLAMELETS IN NEAR-LIMIT SPREAD OVER SOLID FUEL SURFACES

机译:固体燃料表面近极限扩展中火焰的热损失分析

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摘要

The profile of a spreading flamelet is analyzed by examining the heat losses to surrounding surfaces. The study addresses the reasons why flamelets have shapes ranging from round hemispherical "caps" to flat "coin-like" discs. A parabolic shape profile is used for the thin flame sheet, which provides both flame length and flame curvature. A third parameter specifies the height of the flame from the surface beneath it. Radiation and conduction heat losses from the flame sheet are calculated for various flame shapes. Overall heat losses as well as heat losses to the surface beneath the flamelet are examined. Some of the heat "losses" are misnamed because they produce the necessary surface decomposition for subsequent gaseous flame fuel vapors. Strictly, then, "losses" do not contribute appreciably to the maintenance of the flame. Physical arguments are made to explain observed flame spread behavior and flame shapes in response to prevailing flow and environmental conditions.
机译:通过检查周围表面的热损失来分析火焰蔓延的轮廓。该研究解决了小火焰具有从圆形半球形“帽”到扁平“硬币状”圆盘的形状的原因。抛物线形轮廓用于薄火焰片,它既提供火焰长度,又提供火焰曲率。第三个参数指定火焰从其下面的表面的高度。针对各种火焰形状,计算出了火焰片的辐射和传导热损失。检查总体热量损失以及火焰小火焰下表面的热量损失。一些热“损失”被错误命名,因为它们会为随后的气态火焰燃料蒸气产生必要的表面分解。因此,严格来说,“损失”对维持火焰没有明显的作用。进行了物理论据来解释观察到的火焰蔓延行为和响应于主要流动和环境条件的火焰形状。

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