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Experimental study of influence of Liquefied Petroleum Gas addition in Hydrotreated Vegetable Oil fuel on ignition delay, flame lift off length and soot emission under diesel-like conditions

机译:类柴油条件下加氢处理植物油燃料中液化石油气对着火延迟,起火长度和烟尘排放影响的实验研究

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摘要

The fundamental behaviour on ignition and combustion characteristics of blends of Hydrotreated Vegetable Oil and Liquid Petroleum Gas was investigated in a constant high pressure, high temperature combustion chamber, using a prototype lab-scale injection system adapted from a conventional common-rail system to conduct the injection events, ensuring that fuel was liquid at any point of the injection system and avoiding the formation of fuel vapour bubbles that could alter the injected fuel behaviour.The ignition delay, flame lift-off length and the soot formation were studied by means of high-speed imaging techniques, for different operating conditions. The aim of the work is to characterize the effect of Hydrotreated Vegetable Oil-Liquid Petroleum Gas blend ratios on the previously mentioned parameters.Experimental results show that the behaviour of the fuel blends follow the expected trends of conventional diesel type fuels when varying ambient temperature, density and injection pressure. Hydrotreated Vegetable Oil, being the highest reactivity fraction, controls auto ignition of the blend. However, Liquid Petroleum Gas acts as combustion inhibitor increasing both ignition delay and lift-off length as its ratio in the blend increases. As a consequence, the differences observed in terms of flame radiation suggest that increasing Liquid Petroleum Gas fraction reduces soot formation as it promotes a higher air/mixture.
机译:在恒定的高压,高温燃烧室内,使用由常规共轨系统改造而成的原型实验室规模喷​​射系统,对加氢处理的植物油和液态石油气的混合物的着火和燃烧特性进行了基本研究。喷射事件,确保燃料在喷射系统的任何点都是液体,并避免形成会改变喷射燃料行为的燃料汽泡。通过高燃比研究了点火延迟,火焰抬起长度和烟灰形成成像技术,适用于不同的操作条件。这项工作的目的是表征加氢处理的植物油-液化石油气混合比对上述参数的影响。实验结果表明,当环境温度变化时,混合燃料的行为符合常规柴油类型燃料的预期趋势,密度和注射压力。加氢处理的植物油具有最高的反应活性,可控制混合物的自燃。然而,随着液化石油气在混合物中的比例增加,液化石油气充当了燃烧抑制剂,从而增加了点火延迟和提升长度。结果,在火焰辐射方面观察到的差异表明,增加液化石油气分数可以减少烟灰的形成,因为它促进了更高的空气/混合物。

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