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Numerical Simulation on the Laser Induced Oxygen Spark under Different Ambient Conditions

机译:不同环境条件下激光诱导氧气火花的数值模拟

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As a new type of ignition technique, laser induced spark ignition can be widely used in the ignition system of internal combustion engines and aero-engines. In this paper, laser induced oxygen spark evolution has been numerically studied with a two-dimensional, unsteady, multi-components and time-accurate model under different ambient temperatures and pressures. The chemical kinetics between species has been considered. A commercial software Fluent is used to solve the problem. Results show that both ambient conditions have great effect on the maximum temperature and maximum pressure of oxygen spark initially, but the effect decreases with time going on. The maximum velocity and maximum electron number density are also prominently influenced by ambient conditions. For the relationship between shock wave radius and time, ambient temperature plays an important role while ambient pressure is insignificant. These results above will be the foundation for the applications of laser induced spark ignition in the future.
机译:作为一种新型的点火技术,激光诱导的火花点火可以广泛应用于内燃机和空气发动机的点火系统。在本文中,在不同的环境温度和压力下,用二维,不稳定,多组分和时间准确的模型进行了数值研究了激光诱导的氧气火花进化。已经考虑了物种之间的化学动力学。使用商业软件流畅,用于解决问题。结果表明,两个环境条件都对最初的最高温度和氧气火花的最大压力产生了很大的影响,但随着时间的推移,效果会降低。最大速度和最大电子数密度也突出受环境条件的影响。对于冲击波半径和时间之间的关系,环境温度起着重要作用,而环境压力是微不足道的。上述结果将是激光在未来激光诱导火花点火应用的基础。

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