首页> 外文期刊>International journal of hydrogen energy >1d Thermo-fluid Dynamic Modelling Of An S.i. Single-cylinder H_2 Engine With Cryogenic Port Injection
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1d Thermo-fluid Dynamic Modelling Of An S.i. Single-cylinder H_2 Engine With Cryogenic Port Injection

机译:S.i.的1d热流体动力学建模带有低温进气口的单缸H_2发动机

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This paper describes the numerical and experimental research work carried out on a single-cylinder spark-ignition research engine with cryogenic port injection of gaseous hydrogen. A 1D thermo-fluid dynamic simulation code for the simulation of a hydrogen fuelled S.I. engine has been developed; in particular, a quasi-D multi-zone combustion model has been enhanced to predict the burning rate of a homogeneous mixture of hydrogen and air, on the basis of an extended database for laminar burning velocities. Moreover, a 1D simulation of the unsteady flows in the whole intake and exhaust systems coupled to the engine has been addressed, considering the transport of chemical species to account for the port injection of hydrogen at very low temperature (cryogenic conditions). The working fluid is treated as a mixture of ideal gases, including para-hydrogen, with specific heats depending on the gas temperature and the mole fractions. A validation of the simulation model is shown in the paper, comparing the computed results with the experimental data of in-cylinder pressures, cylinder NO emissions and intake and exhaust instantaneous pressure pulses at different locations, for naturally aspirated engine conditions.
机译:本文介绍了在带有气态氢的低温端口注入的单缸火花点火研究发动机上进行的数值和实验研究工作。已开发出一维热流体动态仿真代码,用于模拟氢燃料发动机。尤其是,在扩展的层流燃烧速度数据库的基础上,准D多区域燃烧模型得到了增强,可以预测氢气和空气的均匀混合物的燃烧速率。此外,考虑到化学物质的运输以考虑到在非常低的温度(低温条件)下氢气的端口注入,已经解决了与发动机相连的整个进气和排气系统中的不稳定流动的一维模拟。将工作流体视为理想气体(包括对氢)的混合物,并根据气体温度和摩尔分数确定比热。本文显示了仿真模型的有效性,将计算结果与自然吸气发动机工况下缸内压力,气缸NO排放以及不同位置的进气和排气瞬时压力脉冲的实验数据进行了比较。

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