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Modelling the performance and emission prediction of RB211 aero-gas turbine engine fuelled by Jatropha-based biofuel

机译:基于麻风罗的生物燃料推动RB211航空燃气轮机的性能和排放预测

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Fossil fuel is one of the world vital energy resources.The development of transportation technologies increases the demand for petroleum derivative globally.Fossil fuel consumption produces emissions,which potentially harm the environment and human health.Many mitigations have been implemented to address the two main crises;the energy scarcity and environmental calamity.This paper will discuss on one of the potential solutions by analyzing the performance and emission prediction of aero-gas turbine engine fuelled by Jatropha-based biofuel.Performance analysis was made based on the thrust and specific fuel consumptions at different blended ratio percentages for various flight conditions.The three-shaft high-bypass-ratio engine model,which is identical to the Rolls Royce RB211-524 was used to model in an in-house Cranfield's University software,PYTHIA.PYTHIA is integrated with the TURBOMATCH performance evaluation programme by iterating the mass and energy balance for each engine component.The analysis is then continued to predict Nitrogen Oxides emission index(EINOx)at every flight conditions using an in-house Cranfield's University computer tool,HEPHAESTUS.HEPHAESTUS is an emission prediction software by using Zel'Dovich equations(for NOx)and models the emission by implementing a partially-stirred reactor(PSR)model and perfectly stirred reactor(PSRS)models at different zones in the combustor.Validation showed that HEPHAESTUS is able to capture a reasonable prediction as compared to the International Civil Aviation Organization(ICAO)databank.The performance the biofuel has shown an improvement in engine performance at higher percentage blended ratio but also increase the nitrous oxide indices emission slightly.
机译:化石燃料是世界重要的能源之一。运输技术的发展增加了全球对石油衍生物的需求。汽油燃料消耗产生排放,可能危害环境和人类健康。已实施以解决两种主要危机;能源稀缺和环境灾害。本文将通过分析由基于麻风手的生物燃料推动的航空燃气涡轮发动机的性能和排放预测来讨论一个潜在的解决方案。基于推力和特定燃料消耗来进行性能分析在不同的混合比例的各种飞行条件下的百分比。三轴高旁路 - 比率发动机模型与卷Royce RB211-524相同,用于在内部Cranfield的大学软件中模拟Pythia.Pythia是集成的通过迭代每个发动机组件的质量和能量平衡,通过涡轮机绩效评估计划NT。然后继续分析使用内部Cranfield的大学计算机工具在每个飞行条件下预测氮氧化物排放指数(Einox),Hephaestus.hephaestus是一种通过Zel'dovich方程(NOx)和模型的发射预测软件通过在燃烧器中的不同区域实施部分搅拌的反应器(PSR)模型和完全搅拌反应器(PSRS)模型的发射。过验证显示Hephaestus能够与国际民用航空组织(ICAO)相比捕获合理的预测Databank.Bifueluel百分比混合比例的发动机性能提高了发动机性能,但也增加了氧化二氮氧化物指数的发射。

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