首页> 外文OA文献 >Modelling the combustion in a dual fuel HCCI engine. Investigation of knock, compression ratio, equivalence ratio and timing in a Homogeneous Charge Compression Ignition (HCCI) engine with natural gas and diesel fuels using modelling and simulation.
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Modelling the combustion in a dual fuel HCCI engine. Investigation of knock, compression ratio, equivalence ratio and timing in a Homogeneous Charge Compression Ignition (HCCI) engine with natural gas and diesel fuels using modelling and simulation.

机译:对双燃料HCCI发动机中的燃烧进行建模。使用建模和仿真研究天然气和柴油均质充量压缩点火(HCCI)发动机的爆震,压缩比,当量比和正时。

摘要

This thesis is about modelling of the combustion and emissions of dual fuel HCCI engines for design of “engine combustion system”. For modelling the combustion first the laminar flamelet model and a hybrid Lagrangian / Eulerian method are developed and implemented to provide a framework for incorporating detailed chemical kinetics. This model can be applied to an engine for the validation of the chemical kinetic mechanism. The chemical kinetics, reaction rates and their equations lead to a certain formula for which the coefficients can be obtained from different sources, such as NASA polynomials [1]. This is followed by study of the simulation results and significant findings. Finally, for investigation of the knock phenomenon some characteristics such as compression ratio, fuel equivalence ratio, spark timing and their effects on the performance of an engine are examined and discussed. The OH radical concentration (which is the main factor for production of knock) is evaluated with regard to adjustment of the above mentioned characteristic parameters. In the second part of this work the specification of the sample engine is given and the results obtained from simulation are compared with experimental results for this sample engine, in order to validate the method applied in AVL Fire software. This method is used to investigate and optimize the effects of parameters such as inlet temperature, fuels ratio, diesel fuel injection timing, engine RPM and EGR on combustion in a dual fuel HCCI engine. For modelling the dual fuel HCCI engine AVL FIRE software is applied to simulate the combustion and study the optimization of a combustion chamber design. The findings for the dual fuel HCCI engine show that the mixture of methane and diesel fuel has a great influence on an engine's power and emissions. Inlet air temperature has also a significant role in the start of combustion so that inlet temperature is a factor in auto-ignition. With an increase of methane fuel, the burning process will be more rapid and oxidation becomes more complete. As a result, the amounts of CO and HC emissions decrease remarkably. With an increase of premixed ratio beyond a certain amount, NOX emissions decrease. With pressure increases markedly and at high RPM, knock phenomenon is observed in HCCI combustion.
机译:本论文是关于用于“发动机燃烧系统”设计的双燃料HCCI发动机燃烧和排放的建模。为了进行燃烧建模,首先开发并实施了层流小火焰模型和Lagrangian / Eulerian混合方法,以提供一个框架,以结合详细的化学动力学。该模型可以应用于发动机,以验证化学动力学机理。化学动力学,反应速率及其方程式形成了一个特定的公式,可以从不同的来源(例如NASA多项式[1])获得系数。接下来是对模拟结果和重要发现的研究。最后,为研究爆震现象,研究并讨论了压缩比,燃油当量比,火花正时及其对发动机性能的影响等一些特性。关于上述特征参数的调整来评估OH自由基浓度(其是产生爆震的主要因素)。在本工作的第二部分中,给出了样本引擎的规范,并将从仿真中获得的结果与该样本引擎的实验结果进行了比较,以验证AVL Fire软件中应用的方法。此方法用于研究和优化参数(例如入口温度,燃料比,柴油燃料喷射正时,发动机RPM和EGR)对双燃料HCCI发动机燃烧的影响。为了建模双燃料HCCI发动机,使用了AVL FIRE软件来模拟燃烧并研究燃烧室设计的优化。双燃料HCCI发动机的发现表明,甲烷和柴油的混合物对发动机的功率和排放有很大影响。进气温度在燃烧开始中也起着重要作用,因此进气温度是自动点火的一个因素。随着甲烷燃料的增加,燃烧过程将更加迅速,氧化过程也将更加彻底。结果,CO和HC排放量显着减少。随着预混合比的增加超过一定量,NOX排放量减少。随着压力显着增加和高RPM,在HCCI燃烧中观察到爆震现象。

著录项

  • 作者

    Ghomashi Hossein;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:21:47

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