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Effect of Carbon Dioxide on the Laminar Burning Speed of Propane-Air Mixtures

机译:二氧化碳对丙烷-空气混合物层流燃烧速度的影响

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This experimental research examined the effect of CO2 as a diluent on the laminar burning speed of propane-air mixtures. Combustion took place at various CO2 concentrations (0-80%), different equivalence ratios (0.7phi 1.2) and over a range of temperatures (298-420 K) and pressures (0.5-6.2 atm). The experiments were performed in a cylindrical constant volume chamber with a Z-shaped Schlieren system, coupled with a highspeed CMOS camera to capture the propagation of the flames at speeds up to 4000 frames per second. The flame stability of these mixtures at different pressures, equivalence ratios, and CO2 concentrations was also studied. Only laminar, spherical, and smooth flames were considered in measuring laminar burning speed. Pressure rise data as a function of time during the flame propagation were the primary input of the multishell thermodynamic model for measuring the laminar burning speed of propane-CO2-air mixtures. The laminar burning speed of such blends was observed to decrease with the addition of CO2 and to increase with the gas temperature. It was also noted that the laminar burning speed decreases with increasing pressure. The collected experimental data were compared with simulation data obtained via a steady one-dimensional (1D) laminar premixed flame code from Cantera, using a detailed H-2/CO/C-1-C-4 kinetics model encompassing 111 species and 784 reactions.
机译:这项实验研究检验了二氧化碳作为稀释剂对丙烷-空气混合物层流燃烧速度的影响。燃烧发生在各种CO2浓度(0-80%),不同的当量比(0.7 hi <1.2)以及一系列温度(298-420 K)和压力(0.5-6.2 atm)的条件下。实验是在带有Z形Schlieren系统的圆柱形恒容室中进行的,该室与高速CMOS摄像头配合使用,以高达每秒4000帧的速度捕获火焰的传播。还研究了这些混合物在不同压力,当量比和CO2浓度下的火焰稳定性。在测量层流燃烧速度时,仅考虑层流,球形和光滑火焰。火焰传播过程中随时间变化的压力上升数据是用于测量丙烷-CO2-空气混合物层流燃烧速度的多壳热力学模型的主要输入。观察到此类混合物的层流燃烧速度随添加CO2而降低,并随气体温度而升高。还注意到层流燃烧速度随着压力的增加而降低。使用详细的H-2 / CO / C-1-C-4动力学模型涵盖111种和784个反应,将收集的实验数据与通过稳定的一维(1D)层流预混火焰代码(来自Cantera)获得的模拟数据进行比较。

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