首页> 外文会议>International Mechanical Engineering Congress and Exposition >EXPERIMENTAL INVESTIGATION OF EFFECTS OF GRAPHENE NANO PARTICLES (GNP) ON THE COMBUSTION BEHAVIORS OF RENEWABLE JET FUEL DROPLETS
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EXPERIMENTAL INVESTIGATION OF EFFECTS OF GRAPHENE NANO PARTICLES (GNP) ON THE COMBUSTION BEHAVIORS OF RENEWABLE JET FUEL DROPLETS

机译:石墨烯纳米颗粒(GNP)对可再生射流燃料液滴燃烧行为的实验研究

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Due to the impact of fossil fuel use on the environment, renewable jet fuel has been pursued as an alternative fuel for aircraft engines. Several renewable jet fuels are developed with minimal carbon footprint and pollutants emission to replace petroleum jet fuels. To modify certain combustion behaviors such as combustion rate, ignition delay and total combustion time, colloidal suspension of carbon-based nanoparticles to liquid fuels has proven to be an effective mechanism. But the influence of carbon-based nanoparticles on the combustion behaviors of renewable jet fuels at different concentrations has not yet been investigated. Researchers have been exploring ways to modify the combustion performances of renewable jet fuel, and in this work, the addition of carbon-based nanoparticles (Graphene Nano Particles) is examined as a potential performance enhancing additive for fuel transport safety. The effects of Graphene Nano Particles (GNP) on the ignition and combustion characteristics of soy oil and canola oil based renewable jet fuel at different mass concentrations (1%. 2% & 3%) loading are investigated in this manuscript. The impact of different mass concentrations loading of GNP on the combustion behavior is analyzed by post-processing the high-speed images. It is observed that the ignition delay decreased by 8.52% and combustion rate decreased by 7.26% for renewable jet fuel at 3% GNP loading. GNP also caused a maximum decrease of total combustion time by 13.61% at 3% loading. It is expected that this study will drive further interest in fuel characteristics improvement of renewable jet fuel and will provide experimental data for future computational modeling.
机译:由于化石燃料对环境的影响,可再生喷射燃料作为飞机发动机的替代燃料。几种可再生式喷气式燃料,具有最小的碳足迹和污染物排放,以取代石油喷射燃料。为了改变某些燃烧行为,例如燃烧速率,点火延迟和总燃烧时间,碳基纳米颗粒的胶体悬浮液已被证明是一种有效的机制。但尚未研究碳基纳米粒子对不同浓度的可再生喷射燃料燃烧行为的影响。研究人员一直在探索改变可再生射流燃料的燃烧性能的方法,并且在这项工作中,将碳基纳米颗粒(石墨烯纳米颗粒)添加为燃料运输安全性的潜在性能增强添加剂。石墨烯纳米颗粒(GNP)对不同质量浓度的大豆油和油菜籽油基可再生射流燃料的点火和燃烧特性(1%。2%和3%)装载。通过后处理高速图像分析不同质量浓度加载GNP对燃烧行为的影响。观察到,对于3%GNP负载,可再生喷射燃料降低了8.52%的点火延迟减少了8.52%,燃烧速率降低了7.26%。 GNP还使总燃烧时间的最大降低在3%的载荷下达到13.61%。预计这项研究将推动进一步利益对可再生射流燃料的燃料特性提高,并将为未来的计算建模提供实验数据。

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