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NUMERICAL SIMULATION OF COMBUSTION OF UNLIKE IMPINGING JETS NEAR A WALL

机译:靠近壁面的撞击式射流燃烧的数值模拟

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The combustion of gas-gas hypergolic propellants with MMH (Monomethylhydrazine) as fuel and RFNA (Red fuming nitric acid) as oxidizer are studied numerically for unlike impinging jets near an inclined wall using a detailed chemical reaction mechanism. The current study focuses on quantifying the effect of the inclined wall on the ignition characteristics: namely, contact time/location and ignition delay/location. Furthermore, the effect of wall is assessed with respect to mixing and flame spreading. The baseline three-dimensional simulation results compare two domains, with and without the inclined wall, under the same inlet flow conditions. These results show that the space between the wall surface and injector tips acts as a mixing zone with intensified vorticity and heat release rate. Two-dimensional results for various injection velocities are also presented and are compared with the three-dimensional results.
机译:通过详细的化学反应机理,以不同于撞击壁附近的喷射流为对象,对以MMH(单甲基肼)为燃料和RFNA(红烟硝酸)为氧化剂的燃气高气体推进剂的燃烧进行了数值研究。当前的研究集中在量化倾斜壁对点火特性的影响:即接触时间/位置和点火延迟/位置。此外,就混合和火焰蔓延评估了壁的影响。基线三维模拟结果比较了在相同入口流量条件下有无倾斜壁的两个区域。这些结果表明,壁表面和喷射器尖端之间的空间充当了涡流和放热速率增强的混合区域。还介绍了各种注射速度的二维结果,并将其与三维结果进行了比较。

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