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Dynamic behaviors of coke deposition during pyrolysis of China RP-3 aviation fuel

机译:中国RP-3航空燃料热解焦沉积动态行为

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China RP-3 aviation fuel was used as an endothermic fuel to pyrolyze at temperatures up to 640°C in an electrically heated horizontal channel with an internal diameter of 4 mm. Dynamic behaviors of coke deposition was experimentally investigated. Coking process was considered to the net result of two simultaneous sub-processes: a deposition process and a removal process. Results indicated that coking process was a dynamic behavior with randomness. During duration period of coking run, the parameters especially the pressure drop across the test channel and the fuel temperature in some degree oscillated. The wall temperature of the test channel in a small scale period was unpredicatable, due to the random coke accumulation with different coking rate, and even the random coke peeled off in a sudden. However, repeated experiments were carried out to get reliable results, and multi-experiment obtained some regular patterns of coking behaviors. Opposite to the general realization that coke is a thermal layer to reduce heat transfer, surface deposition in the test channel enhanced the heat transfer during pyrolysis process of China RP-3 aviation fuel. Along the length of test channel, more coke was found to deposit in the front part with fuel temperature less than 350°C. The coking rate (the net result of deposition rate and removal rate) increased by step during coking processes.
机译:中国RP-3航空燃料混合物在温度用作吸热燃料热解高达640℃下,在电加热的水平通道具有4mm的内径。积炭的动态行为进行了实验研究。焦化过程被认为是两个同步子过程的净结果是:一个沉积工艺和去除处理。结果表明,焦化过程是与随机性的动态行为。在持续时间段焦化运行的,所述参数特别是在跨越测试通道的压降和在一定程度上燃料温度摆动。在小规模周期测试通道的壁温度为变幻莫测,由于与不同焦化速率,甚至在突然剥离随机焦炭随机焦炭积累。然而,反复进行实验,以获得可靠的结果,以及多实验得到焦化行为的一些规律。相反的一般认识,即焦炭是热层,以减少热传递,在测试通道表面沉积增强期间中国RP-3航空燃料的热解过程的热传递。沿着测试流路的长度,更多的焦炭被发现在与燃料温度少于350℃的前部来沉积。生焦速率(沉积速率和去除速率的净结果)期间焦化工艺增加了步骤。

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