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首页> 外文期刊>Journal of Fluorine Chemistry >Burning velocity measurement of HFC-41,HFC-152,and HFC-161 by the spherical-vessel method
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Burning velocity measurement of HFC-41,HFC-152,and HFC-161 by the spherical-vessel method

机译:球形容器法测量HFC-41,HFC-152和HFC-161的燃烧速度

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The burning velocities of fluoromethane(HFC-41),1,2-difluoroethane(HFC-152),fluoroethane(HFC-161)and ethane were measured by the spherical-vessel(SV)method at room temperature and at initial pressures of 80-107 kPa over a wide range of HFC/air equivalence ratios(phi).The burning velocities were determined from the measured pressure increases by application of a spherical flame model.Schlieren photography was used to directly observe flame propagation behavior in a cylindrical vessel equipped with optical windows.The time evolution of the flame radii derived from the pressure increases agreed with the time evolution observed with the Schlieren technique.The maximum burning velocities of HFC-41,HFC-152,HFC-161 and ethane were 28.3 cm s~(-1)at phi = 1.01,30.1 cm s~(-1)at phi = 1.07,38.3 cm s~(-1)at phi = 1.07 and 40.9 cm s~(-1)at phi= 1.05,respectively.The maximum burning velocities for the HFCs,including previously reported C_1 and C_2 fluoroalkanes,decreased with increasing F-substitution rate(the ratio of the number of F atoms to the sum of the number of H and F atoms).The concentrations of chemical species in the flames were investigated by means of an equilibrium calculation,and the results suggested that the burning velocity was correlated with the concentrations of H and OH radicals that were not deactivated by F radicals in the flame.The results also suggested that the burning velocities were linearly related to the heats of combustion of the C_1 and C_2 fluoroalkanes.
机译:在室温和初始压力为80的条件下,通过球形容器(SV)方法测量了氟甲烷(HFC-41),1,2-二氟乙烷(HFC-152),氟乙烷(HFC-161)和乙烷的燃烧速度-107 kPa在很宽的HFC /空气当量比(phi)范围内。燃烧速度是通过使用球形火焰模型根据测得的压力增加来确定的.Schlieren摄影被用来直接观察配备有圆柱容器的火焰传播行为HFC-41,HFC-152,HFC-161和乙烷的最大燃烧速度为28.3 cm s〜 (-1)在phi = 1.01,30.1 cm s〜(-1)在phi = 1.07,38.3 cm s〜(-1)在phi = 1.07和40.9 cm s〜(-1)在phi = 1.05。氢氟碳化合物(包括先前报道的C_1和C_2氟代烷烃)的最大燃烧速度随F取代度的增加而降低通过平衡计算研究了火焰中化学物质的浓度,结果表明燃烧速度为结果表明,燃烧速度与C_1和C_2氟代烷烃的燃烧热呈线性关系。

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