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Experimental study on the pre-evaporation pulse combustion of liquid fuel within a porous medium burner

机译:多孔介质燃烧器内液体燃料预蒸发脉冲燃烧的实验研究

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摘要

Experimental studies are conducted to investigate the behaviors of pre-evaporation pulse combustion of liquid fuel within a porous medium burner. A controllable electric preheating system is developed to enhance the evaporation of droplet spray and auto-ignite the flammable vapor without second ignition. Base on the stability analysis of the preheating temperature and the calibration of the fuel flow, the characteristics of the pulse flame in a single injection duration are observed in detail. The thermal characters in terms of the temperature distribution are investigated, and the influences of equivalence ratio and the air flow on the temperature are discussed in the present work. Experimental results show that the pulse flame propagates in the manner of four-phases, i.e., the quasi-steady flame, the transient flame, the free flame and the preheating flame. While the quasi steady flame keeps in a moving state with speed around 0.1 mm/s magnitude order, the propagation of transient flame is similar to a deflagration process with a significant speed of 1.2 m/s magnitude order. The minimum preheating temperature for full evaporation and sustainable combustion is necessary about 1023 K, and the maximum flame temperature achieves up to around 1300 K. As the equivalence ratio increases, an evident temperature improvement and a larger high temperature zone appear, however the propagation speed of the quasi-steady flame almost keeps constant. An increasing air flow plays a limited effect on the maximum temperature while it actually leads to a faster speed of the high temperature zone.
机译:进行实验研究以研究多孔介质燃烧器内液体燃料的预蒸发脉冲燃烧的行为。开发可控电动预热系统以增强液滴喷雾的蒸发,并自动点燃易燃蒸气,而无需第二点火。基于预热温度的稳定性分析和燃料流的校准,详细观察脉冲脉冲中的脉冲火焰的特性。研究了温度分布方面的热特性,并且在本工作中讨论了当量比和对温度的气流对温度的影响。实验结果表明,脉冲火焰以四相的方式传播,即准稳定火焰,瞬态火焰,自由火焰和预热火焰。虽然准稳定的火焰在速度速率约为0.1mm / s幅度级的移动状态下,但瞬态火焰的传播类似于具有1.2 m / s幅度速度的显着速度的换焊过程。完全蒸发和可持续燃烧的最小预热温度是必要的约1023 k,最大火焰温度达到约1300克。随着等效比增加,显而易见的温度改善和较大的高温区,但传播速度准稳定的火焰几乎保持不变。增加的空气流量对最高温度起着有限的影响,同时它实际上导致高温区的速度更快。

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