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Development and validation of a quasi-dimensional combustion model for SI engines fuelled by HCNG with variable hydrogen fractions

机译:HCNG可变氢馏分供气的SI发动机准尺寸燃烧模型的开发和验证

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摘要

Spark ignition engines fuelled by hydrogen enriched compressed natural gas (HCNG) have many advantages compared to traditional gasoline, diesel and natural gas engines, especially in emission control. Experimental researches have been continuously conducted to improve HCNG engine's configuration and control strategy aimed at making full use of this new fuel. With the same target, this work presents a predictive model used to simulate the working cycle of HCNG engines which is applicable for variable hydrogen blending ratios. The fundamentals of the thermodynamic model, the turbulent flame propagation model and related equation were introduced. Considering that the most important factor influencing the applicability of the model for variable hydrogen blending ratio is the laminar flame speed, the methods of how to deal with the laminar burning velocity in the model were then described in some more detail. After the determination of model constants by calibration, simulation results were compared with experimental cylinder pressure data for various hydrogen blending ratios, spark timings and equivalence ratios. The results show that simulation and experimental results match quite well except for extremely fuel lean conditions where problems of incomplete combustion become severe.
机译:与传统的汽油,柴油和天然气发动机相比,由富氢压缩天然气(HCNG)燃料驱动的火花点火发动机具有许多优势,尤其是在排放控制方面。为了改善HCNG发动机的配置和控制策略,已经进行了持续的实验研究,旨在充分利用这种新燃料。在相同的目标下,这项工作提出了一种用于模拟HCNG发动机工作循环的预测模型,该模型适用于可变的氢混合比。介绍了热力学模型,湍流火焰传播模型和相关方程的基本原理。考虑到影响模型可变氢混合比的适用性的最重要因素是层流火焰速度,因此将更详细地描述如何处理模型中层流燃烧速度的方法。通过校准确定模型常数后,将模拟结果与各种氢气混合比,火花正时和当量比的实验气缸压力数据进行比较。结果表明,除了极度贫油的情况(不完全燃烧的问题变得很严重)以外,仿真和实验结果非常吻合。

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