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Rotating detonation in a ramjet engine three-dimensional modeling

机译:冲压喷气发动机中的旋转爆轰三维建模

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A rotating detonation engine (RDE) combustion chamber fed by hydrogen-air mixtures of different composition was modeled numerically using 3D geometry. The RDE is a new type of engines capable to create higher thrust than the traditional ones based on the combustible mixture deflagration process. The dynamical process of combustion in the RDE is more than 100 times faster than that for the classical slow deflagration combustion mode. This type of engine has a more efficient thermodynamic cycle. In numerical experiments, different combustible mixture compositions were tested, and different scenarios of the engine performance were obtained. The computational domain used a regular mesh of uniform cubic elements. The time-consuming parts of the numerical code were parallelized using the OpenMP technique. Our calculations were made at APK-5 with a peak performance of 5.5 Tera Flops. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:使用3D几何模型对由不同成分的氢-空气混合物供入的旋转爆震发动机(RDE)燃烧室进行了数值建模。 RDE是一种新型发动机,能够基于可燃混合物爆燃过程产生比传统发动机更高的推力。 RDE中的动态燃烧过程比经典的慢爆燃燃烧模式快100倍以上。这种类型的发动机具有更有效的热力学循环。在数值实验中,测试了不同的可燃混合物成分,并获得了发动机性能的不同情景。计算域使用均匀立方元素的规则网格。使用OpenMP技术并行化了数字代码中耗时的部分。我们的计算是在APK-5上进行的,峰值性能为5.5 Tera Flops。 (C)2018 Elsevier Masson SAS。版权所有。

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