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A multi-featured model for estimation of thermodynamic properties, adiabatic flame temperature and equilibrium combustion products of fuels, fuel blends, surrogates and fuel additives

机译:用于估算燃料,燃料混合物,代用品和燃料添加剂的热力学性质,绝热火焰温度和平衡燃烧产物的多功能模型

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摘要

This study introduces a new multi-featured equilibrium combustion model for fuels, fuel blends and surrogates which estimates mole fractions, adiabatic flame temperature and thermodynamic properties of the equilibrium combustion products. The model enables simultaneous consideration of unlimited number of C alpha H beta O gamma N delta type fuels of different ratios and also enables any C alpha H beta O gamma N delta, type fuel additive, Argon, H2O, CO, CO2, N-2, and O-2 to be considered among the reactants. Equilibrium mole fractions and adiabatic flame temperature are not only necessary for estimating thermodynamic properties of exhaust gases but also provide key data to obtain the non-equilibrium concentrations. As for thermodynamic properties, precise calculation is necessary for accurate performance estimations of internal combustion engines. Meeting these fundamental needs and providing combustion analysis of numerous fuel blends of various mixing ratios, this new model can be a recourse tool for researchers working on fuels, surrogates, emissions and internal combustion engine modelling. Simulations of any combustion process including existence of exhaust gas recirculation, supplementary firing, steam injection, argon dilution, water injection, fuel emulsification and reheat process in gas turbines can easily be conducted by integrating this validated model into thermodynamic cycle models. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究为燃料,燃料混合物和替代燃料引入了一种新的多特征平衡燃烧模型,该模型可估算摩尔分数,绝热火焰温度和平衡燃烧产物的热力学性质。该模型可以同时考虑无限数量的不同比例的C alpha H beta OγNδ型燃料,还可以使用任何C alpha H beta OγNδ型燃料添加剂,氩气,H2O,CO,CO2,N-2和O-2被视为反应物。平衡摩尔分数和绝热火焰温度不仅是估算废气的热力学性质所必需的,而且还提供了获得非平衡浓度的关键数据。至于热力学性质,精确计算对于内燃机的精确性能估计是必要的。满足这些基本需求并提供多种混合比的多种燃料混合物的燃烧分析,该新模型可以作为研究人员进行燃料,替代物,排放物和内燃机建模的研究工具。通过将这个经过验证的模型集成到热力循环模型中,可以轻松地进行任何燃烧过程的模拟,包括排气再循环,补充燃烧,蒸汽喷射,氩气稀释,注水,燃料乳化和再热过程的存在。 (C)2017 Elsevier Ltd.保留所有权利。

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