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Thermal degradation of two liquid fuels and detonation tests for pulse detonation engine studies

机译:两种液体燃料的热降解和用于脉冲爆震发动机研究的爆震测试

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The use of liquid fuels such as kerosene is of interest for the pulse detonation engine (PDE). Within this context, the aim of this work, which is a preliminary study, was to show the feasibility to initiate a detonation in air with liquid-fuel pyrolysis products, using energies and dimensions of test facility similars to those of PDEs. Therefore, two liquids fuels have been compared, JP10, which is a synthesis fuel generally used in the field of missile applications, and decane, which is one of the major components of standard kerosenes (F-34, Jet A1, ...). The thermal degradation of these fuels was studied with two pyrolysis processes, a batch reactor and a flow reactor. The temperatures varied from 600 degrees C to 1,000 degrees C and residence times for the batch reactor and the flow reactor were, respectively, between 10-30 s and 0.1-2 s. Subsequently, the detonability of synthetic gaseous mixtures, which was a schematisation of the decomposition state after the pyrolysis process, has been studied. The detonability study, regarding nitrogen dilution and equivalence ratio, was investigated in a 50 mm-diameter, 2.5 m-long detonation tube. These dimensions are compatible with applications in the aircraft industry and, more particularly, in PDEs. Therefore, JP10 and decane were compared to choose the best candidate for liquid-fuel PDE studies.
机译:对于脉冲爆震发动机(PDE),使用诸如煤油的液体燃料是令人感兴趣的。在这种情况下,这项工作是一项初步研究,其目的是证明使用类似于PDE的能量和测试设备的尺寸,用液体燃料热解产物在空气中引爆的可行性。因此,已经比较了两种液体燃料,JP10(一种通常用于导弹应用领域的合成燃料)和癸烷(一种是标准煤油的主要成分之一)(F-34,Jet A1等)。 。通过两个热解过程,间歇式反应器和流动式反应器研究了这些燃料的热降解。温度在600摄氏度至1,000摄氏度之间变化,间歇反应器和流动反应器的停留时间分别在10-30 s和0.1-2 s之间。随后,研究了合成气态混合物的爆炸性,这是热解过程后分解状态的示意图。在50 mm直径,2.5 m长的引爆管中研究了关于氮稀释和当量比的引爆性研究。这些尺寸与飞机工业,尤其是PDE中的应用兼容。因此,比较了JP10和癸烷,以选择液体燃料PDE研究的最佳人选。

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