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Opposed-flow floame development over MEL ting polymers-modeling and global nenrgy balance analysis

机译:梅尔廷聚合物 - 建模和全球Nenrigy平衡分析的反对流扑开

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A numerical model for flame spread over polymeric surfaces is investigateed. The physical mechanisms considered in the condensed material include phase change (melting), in-depth pyrolysis reaction and heat conduction. The physical mechanisms considered in the gas phase, using the Oseen approximation, include heat transfer, fuel and oxidizer transfer, and finite-rate combustion kinetics. The mechanisms at the interface include heat conduction of both phases, radiant emission from the surface, and diffusion of pyrolysis oproducts. The dependence of the flame spread rate on phase change and thermal properties is investigated by varying three non-dimesional parameters, St, k_1-bar , and C-bar _(Pl). Quantitative comparisons of flame spread rate indicate that the numerical model matches very well with an analytical formula. An energy balance analysis is performed for both ignition and flame spread processes in order to establish the importance of various heat transfer mechanisms and develop a simple theory. The linear relationship between ignition time and 1/ST (or C-bar _(Pl)) from the numerical results is predicted by a simple theory. Good quantitative agreement between this theory and the numerical results is found for variable C-bar _(pl), and fair agreement for variable St. For variable k-bar _1, only qualitative deductions can be obtained from this theory. The mechanisms of flame spread at the steady state are also interpreted by performing the energy balance analysis on various control volumes selected.
机译:为火焰蔓延超过聚合物表面的数值模型被investigateed。在冷凝材料所考虑的物理机制包括相变(熔化),深入热解反应和热传导。在气相考虑,使用奥辛近似的物理机制,包括热传递,燃料和氧化剂输送,和有限速率燃烧动力学。在界面处的机制包括两相的热传导,从表面辐射的发射,和热解oproducts的扩散。相变性质和热性质的火焰蔓延速度的依赖性通过改变三个非参数时二维的St,K_1酒吧,和C-巴_(PL)的影响。火焰传播速度的定量比较表明,该数值模型匹配得很好,分析公式。是您在点火和火焰蔓延的过程,以建立各传热机制的重要性,并制定一个简单的理论进行能量平衡分析。点火时间和1 / ST从数值结果(或C-巴_(PL))之间的线性关系是由一个简单的理论预测。这个理论和数值结果之间良好的定量协议发现变量C-吧_(PL),以及公平的协议可变圣对于可变K棒_1,只是定性扣除可从这一理论得到。在稳定状态下的火焰传播的机制也通过对选定的各种控制体积的能量平衡分析解释。

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