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Numerical Analysis of the Activated Combustion High-Velocity Air-Fuel Spraying Process: A Three-Dimensional Simulation with Improved Gas Mixing and Combustion Mode

机译:活性燃烧高速空气燃料喷涂工艺的数值分析:具有改进的气体混合和燃烧模式的三维模拟

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摘要

Owing to its low flame temperature and high airflow velocity, the activated combustion high-velocity air-fuel (AC-HVAF) spraying process has garnered considerable attention in recent years. Analyzing the velocity field, temperature field, and composition of AC-HVAF spray coatings plays a vital role in improving the quality of coatings. In this study, an actual spray gun is adopted as a prototype, and the radial air inlets are introduced to improve the reaction efficiency so that the chemical reaction can be completed in the combustion chamber. Furthermore, a complete three-dimensional (3D) model is established to examine the effects of radial inlets and porous ceramic sheet on the combustion and flow fields. The hexahedral cells are used to discretize the entire model for reducing the influence of false-diffusion on the calculation results. The gas flow field is simulated by the commercial Fluent software, and the results indicate that the porous ceramic sheet effectively reduces the turbulent dissipation of the airflow with a good rectification effect (the ceramic sheet ensures a consistent airflow direction). The radial inlets and the porous ceramic sheet promote the formation of vortex in the combustion chamber, increase the residence time and stroke of the gas in the combustion chamber, and improve the probability of chemical reactions. In addition, it is observed that the stability of velocity for the airflow is strongly related to the airflow density.
机译:由于其低火焰温度和高气流速度,近年来,激活的燃烧高速空气 - 燃料(AC-HVAF)喷涂过程已经得到了相当大的关注。分析速度场,温度场和Ac-HVAF喷涂涂层的组成在提高涂料的质量方面起着至关重要的作用。在该研究中,采用实际喷枪作为原型,引入径向空气入口以提高反应效率,使得化学反应可以在燃烧室中完成。此外,建立了完整的三维(3D)模型以检查径向入口和多孔陶瓷片对燃烧和流场的影响。六面体细胞用于离散整个模型,以降低假扩散对计算结果的影响。通过商业流畅的软件模拟气体流场,结果表明多孔陶瓷片有效地降低了气流的湍流耗散,具有良好的整流效果(陶瓷片确保一致气流方向)。径向入口和多孔陶瓷片促进燃烧室中涡流的形成,增加燃烧室中气体的停留时间和行程,提高化学反应的可能性。另外,观察到气流的速度稳定性与气流密度强烈相关。

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