首页> 外文期刊>International journal of hydrogen energy >CFD analysis of hydrogen injection pressure and valve profile law effects on backfire and preignition phenomena in hydrogen-diesel dual fuel engine
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CFD analysis of hydrogen injection pressure and valve profile law effects on backfire and preignition phenomena in hydrogen-diesel dual fuel engine

机译:氢柴油双燃料发动机注氢压力和气门廓线规律对回火和提前点火现象的CFD分析

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摘要

This paper focuses on optimizing the hydrogen TMI (timed manifold injection) system through valve lift law and hydrogen injection parameters (pressure, injection inclination and timing) in order to prevent backfire phenomena and improve the volumetric efficiency and mixture formation quality of a dual fuel diesel engine operating at high load and high hydrogen energy share. This was achieved through a numerical simulation using CFD code ANSYS Fluent, developed for a single cylinder hydrogen-diesel dual fuel engine, at constant engine speed of 1500 rpm, 90% of load and 42.5% hydrogen energy share. The developed tool was validated using experimental data. As a results, the operating conditions of maximum valve lift = 10.60 mm and inlet valve closing = 30 degrees CA ABDC (MVL10 IVC30) prevent the engine from backfire and pre-ignition, and ensure a high volumetric efficiency. Moreover, a hydrogen start of injection of 60 degrees CA ATDC (HSOI60) is appropriate to provide a pre-cooling effect and thus, reduce the pre-ignition sources and helps to quench any hot residual combustion products. While, the hydrogen injection pressure of 2.7 bar and an inclination of 60 degrees, stimulate a better quality of hydrogen-air mixture. Afterwards, a comparison between combustion characteristics of the optimized hydrogen-diesel dual fuel mode and the baseline (diesel mode) was conducted. The result was, under dual fuel mode there is an increase in combustion characteristics and NOx emissions as well as a decrease in CO2 emissions. For further improvement of dual fuel mode, retarding diesel start of injection (DSOI) strategy was used. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文着重于通过气门升程定律和氢气喷射参数(压力,喷射倾斜度和正时)优化氢气TMI(定时歧管喷射)系统,以防止回火现象并提高双燃料柴油的容积效率和混合气形成质量。发动机在高负载和高氢能量份额下运行。这是通过使用CFD代码ANSYS Fluent进行的数值模拟实现的,该数值模拟是为单缸氢柴油双燃料发动机开发的,恒定发动机转速为1500 rpm,负载为90%,氢能份额为42.5%。使用实验数据验证了开发的工具。结果,最大气门升程= 10.60 mm和进气门关闭= 30度CA ABDC(MVL10 IVC30)的工作条件可防止发动机逆火和预点火,并确保高容积效率。此外,以60度CA ATDC(HSOI60)的氢气开始喷射适合提供预冷却效果,因此减少了预点火源并有助于淬灭任何热的残留燃烧产物。同时,氢气注入压力为2.7 bar,倾角为60度,可刺激氢气与空气混合物的质量更好。之后,进行了优化的氢柴油双燃料模式和基准(柴油模式)的燃烧特性比较。结果是,在双燃料模式下,燃烧特性和NOx排放量增加,而CO2排放量减少。为了进一步改善双燃料模式,使用了延迟柴油喷射启动(DSOI)策略。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2019年第18期|9408-9422|共15页
  • 作者单位

    Univ MHamed BOUGARA Boumerdes, Fac Hydrocarbures & Chim, Lab Genie Phys Hydrocarbures, Ave Independance, Boumerdes 35000, Algeria|Ctr Dev Energies Renouvelables, Route Observ BP 62, Bouzareah 16340, Alger, Algeria;

    Univ MHamed BOUGARA Boumedes, Fac Sci Ingn, Lab Energet Mecan & Ingn, Ave Independance, Boumerdes 35000, Algeria;

    Ctr Dev Energies Renouvelables, Route Observ BP 62, Bouzareah 16340, Alger, Algeria;

    IMT Atlantique, GEPEA, Nantes, France;

    Univ MHamed BOUGARA Boumerdes, Fac Hydrocarbures & Chim, Lab Genie Phys Hydrocarbures, Ave Independance, Boumerdes 35000, Algeria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen-diesel dual fuel engine; Hydrogen TMI system; Hydrogen injection parameters; Valve lift law; CFD analysis;

    机译:氢柴油双燃料发动机;氢TMI系统;氢喷射参数;气门升程定律;CFD分析;
  • 入库时间 2022-08-18 04:19:51

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