The effect of fuel volatility on droplet depletion rate and penetration of vaporizing fuel droplets in a Gas Turbine Combustor

N. Sharma
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Abstract

It is well recognized that the fuel volatility has significant role in the dispersion and penetration of the fuel droplets sprayed into a combustor. Hence a study of the fuel droplet penetration and vaporization histories of a liquid fuel spray injected into a turbulent swirling flow of air through a typical can type Gas Turbine Combustor have been evaluated from numerical solutions of the conservation equations in gas and droplet phases. It is observed from the study that generally a higher swirl decrease the droplet penetration rate irrespective of the fuel volatility, but the effect is more pronounced for lighter droplet particles of n hexane than for the heavier kerosene droplets. Also an increase in spray cone angle shows a drastic reduction in the penetration of the spray. The effect of fuel volatility is marginal for different Spray cone angles as the droplet penetration is dictated more by the spray dynamics due to changed spray cone angle than the fuel volatility. But an increase in combustor pressure reduces the droplet penetration considerably. The fuel droplets with higher volatility seem to travel longer in a higher ambience more due to decreased rate of vaporization at higher pressure.
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燃料挥发性对燃气轮机燃烧室中汽化燃料液滴耗竭率和渗透的影响
燃油挥发性对喷入燃烧室的燃油液滴的扩散和渗透起着重要的作用。因此,从气相守恒方程和液滴守恒方程的数值解出发,研究了液体燃料喷雾通过典型的罐式燃气轮机燃烧室喷射到紊流涡旋气流中的燃料液滴渗透和汽化历史。研究发现,无论燃油挥发性如何,通常较高的涡流都会降低液滴的渗透速率,但正己烷液滴颗粒较轻的影响比较重的煤油液滴更为明显。此外,喷淋锥角的增加表明喷淋的穿透性急剧降低。不同锥角下,燃油挥发性对液滴侵彻的影响较小,由于锥角的改变,液滴侵彻更多地取决于喷雾动力学,而燃油挥发性对液滴侵彻的影响较小。但燃烧室压力的增加大大降低了液滴的穿透。具有较高挥发性的燃料液滴似乎在较高的环境中旅行更长时间,更多的是由于在较高的压力下汽化速率降低。
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