首页> 外文期刊>Combustion Science and Technology >CHARACTERISTICS OF PYROLYSIS AND COMBUSTION OF POLYMERS IN STAGNATION-POINT FLOW FOR PREHEATED AND DILUTED AIR WITH H_2O AND CO_2
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CHARACTERISTICS OF PYROLYSIS AND COMBUSTION OF POLYMERS IN STAGNATION-POINT FLOW FOR PREHEATED AND DILUTED AIR WITH H_2O AND CO_2

机译:含H_2O和CO_2的预稀释空气在定点流动中聚合物的热解和燃烧特性

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摘要

Combustion experiments on polypropylene (PP) and polyethylene terephethalate (PET) in stagnation-point flow were performed to investigate the fundamental characteristics of these polymers in high-temperature air combustion (HiTAC). Numerical study was also performed to estimate the regression rate and to determine the kinetic parameter of pyrolysis. In the experiments on PP combustion, extinction limits and sooting limits were found to be extended when highly preheated air was used. In the case of H_2O and CO_2 dilutions, the dilution enhanced regression rates at low stretch rates. In the ease of PET combustion, results indicated that regression rates depended on the production rate of char. The kinetic parameters of PP pyrolysis under the combustion conditions were estimated using a new method in which experiments and numerical simulations were combined. The regression rates calculated using the kinetic parameters obtained in the present study were in good agreement with those of the experiments in contrast with the numerical results using the kinetic parameters obtained using the previously reported thermal gravimetric analysis (TGA).
机译:进行了聚丙烯(PP)和聚对苯二甲酸乙二酯(PET)驻点流动的燃烧实验,以研究这些聚合物在高温空气燃烧(HiTAC)中的基本特性。还进行了数值研究以估计回归速率并确定热解的动力学参数。在PP燃烧实验中,发现当使用高度预热的空气时,消光极限和烟ot极限会扩大。在H_2O和CO_2稀释的情况下,稀释在低拉伸速率下提高了回归速率。在易于PET燃烧的情况下,结果表明回归速率取决于炭的生产率。使用一种新的方法,将实验和数值模拟相结合,估算了PP在燃烧条件下的热解动力学参数。使用本研究中获得的动力学参数计算出的回归率与实验结果吻合良好,而使用先前报道的热重分析法(TGA)获得的使用动力学参数的数值结果则与之相反。

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