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Calculations and Test Measurements of In-Cylinder Combustion Velocity of Hydrogen - Air Mixtures Considering the Effect of Flame Instability

机译:考虑火焰不稳定性效应的氢气混合物缸内燃烧速度的计算和测试测量

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The combustion characteristics of hydrogen-air mixtures have significance significant impact on the performance and control of hydrogen-fueled internal combustion engines and the combustion velocity is an important parameter in characterizing the combustion characteristics of the mixture. A four-cylinder hydrogen internal combustion engine was used to study hydrogen combustion; the combustion characteristics of a hydrogen mixture were experimentally studied in a constant-volume incendiary bomb, and the turbulent premixed combustion characteristics of hydrogen were calculated and analyzed. Turbulent hydrogen combustion comes under the folded laminar flame model. The turbulent combustion velocity in lean hydrogen combustion is related not only to the turbulent velocity and the laminar burning velocity, but also to the additional turbulence term caused by the instability of the flame. The formula to calculate turbulent combustion velocity considering instability is proposed and verified by experiments. This formula can be used to calculate the combustion velocity under the boundary conditions of the hydrogen internal combustion engine, which is instrumental for hydrogen internal combustion engine design and optimization.
机译:氢气混合物的燃烧特性对氢气燃料的内燃机的性能和控制具有重要影响,并且燃烧速度是表征混合物的燃烧特性的重要参数。四缸氢气内燃机用于研究氢燃烧;实验在恒定体积燃烧中进行了氢气混合物的燃烧特性,并计算并分析了氢的湍流预混燃烧特性。湍流氢燃烧来自折叠的层状火焰模型。瘦氢燃烧中的湍流燃烧速度不仅有效地与湍流速度和层状燃烧速度相关,而且还与由火焰的不稳定性引起的额外湍流项。通过实验提出并验证了考虑不稳定性的湍流燃烧速度的公式。该公式可用于计算氢气内燃机边界条件下的燃烧速度,这是氢气内燃机设计和优化的仪器。

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