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TWIN-FLUID ATOMIZED SPRAY COMBUSTION OF STRAIGHT VEGETABLE OIL AT ELEVATED PRESSURES

机译:直压蔬菜油的双流雾化喷雾燃烧

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The effect of the chamber pressure on combustion of a twin-fluid-atomized spray of straight vegetable oil (VO) in a swirl stabilized combustion system is experimentally studied. A system with high pressure capabilities was developed, and flame and emissions characteristics of VO are investigated at elevated pressures, up to about 5 bars, different heat release rates and atomizing air to liquid ratios (ALR) by mass. An image analysis technique was developed to infer flame and soot characteristics from visual images acquired by a digital camera. An increase in the ALR improved combustion characterized by blue flames, lower CO and NOx emissions, and minimal soot formation. For a given fuel flow rate, an increase in the chamber pressure resulted in smaller volume flames with lower CO levels but higher NOx emissions. Compared to diesel, as pressure increased, straight VO flames produced lower NOx and more voluminous flames characterized by distributed combustion with less soot formation. Overall, straight VO could be atomized and combusted at elevated pressures using the twin-fluid atomizer of the present study, and the resulting VO flames exhibited less sensitivity to chamber pressure variations.
机译:实验研究了腔室压力对双流体雾化的直馏植物油(VO)在旋流稳定燃烧系统中燃烧的影响。开发了具有高压能力的系统,并在升高的压力,高达约5 bar,不同的放热速率和雾化空气与液体的质量比(ALR)的条件下研究了VO的火焰和排放特性。开发了一种图像分析技术,以从数码相机获取的可视图像中推断出火焰和烟尘的特性。 ALR的增加可改善燃烧,其特征是蓝焰,较低的CO和NOx排放量以及最小的烟灰形成。对于给定的燃料流量,燃烧室压力的增加会导致火焰体积较小,CO含量较低但NOx排放量较高。与柴油相比,随着压力的增加,纯正的VO火焰产生的NOx减少,而体积更大的火焰则以分布燃烧的方式形成,且烟灰形成较少。总体而言,使用本研究的双流体雾化器,可以在升高的压力下将纯净的VO雾化和燃烧,并且所得的VO火焰对腔室压力变化的敏感性较低。

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