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FLAME SPEED IN A BINARY SUSPENSION OF SOLID FUEL PARTICLES

机译:固体燃料二元悬浮中的火焰速度

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Most natural and industrial combustible dusts have a wide distribution of particle sizes. Yet, the majority of experimental data on flame propagation in dust clouds are given in relation to some average particle size, and all known theoretical models of dust combustion consider only monosize suspensions. Since the ignition temperature and combustion rate of an individual dust particle are functions of particle size, the flame in real dust suspensions has a complex, multistage structure. As a first step toward understanding multisize dust combustion, the combustion of a suspension of two monosize powders (that in general can be also of different chemical nature) is investigated in the present work theoretically and experimentally. A simple analytical model developed for the flame in a fuel-lean binary suspension permits flame speed and structure to be analyzed as a function of the dust composition and combustion properties of individual particles. The flame speeds predicted by the binary model were compared with flame speeds calculated from a model of monosize dust flame using various average particle size representations. It is shown that averaging of the particle size in general fails to correctly predict the flame speed over the wide range of the binary dust compositions. The flame propagation speed in a binary suspension of aluminum and manganese powders was investigated experimentally by observing the laminar stage of flame propagation in a semi-open vertical tube. The model correctly predicts dependence of the flame speed on mixture composition (mass ratio of manganese and aluminum dusts in suspension) and the mixture composition at the limit of flarne propagation.
机译:大多数天然和工业可燃粉尘的粒径分布范围很广。然而,大多数关于尘埃云中火焰传播的实验数据都是相对于一些平均粒径给出的,并且所有已知的尘埃燃烧理论模型仅考虑单一尺寸的悬浮液。由于单个灰尘颗粒的着火温度和燃烧速率是颗粒大小的函数,因此实际灰尘悬浮液中的火焰具有复杂的多级结构。作为理解多尺寸粉尘燃烧的第一步,在理论和实验上研究了两种单一尺寸粉末(通常也可以具有不同的化学性质)的悬浮液的燃烧。针对贫燃料二元悬浮液中的火焰开发的简单分析模型允许根据粉尘成分和单个颗粒的燃烧特性对火焰速度和结构进行分析。使用各种平均粒径表示,将由二元模型预测的火焰速度与由单一尺寸粉尘火焰模型计算的火焰速度进行了比较。结果表明,平均粒径通常不能正确预测二元粉尘成分范围广的火焰速度。通过观察半开放式垂直管中火焰传播的层流阶段,实验研究了铝和锰粉的二元悬浮液中的火焰传播速度。该模型正确地预测了火焰速度对混合物成分(悬浮液中锰和铝粉尘的质量比)以及在果皮繁殖极限处混合物成分的依赖性。

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