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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Numerical Investigation on Mixture Formation in a Turbocharged Port-Injection Natural Gas Engine Using Multiple Cycle Simulation
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Numerical Investigation on Mixture Formation in a Turbocharged Port-Injection Natural Gas Engine Using Multiple Cycle Simulation

机译:使用多循环仿真对涡轮增压器喷射天然气发动机混合物形成的数值研究

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摘要

In the present study, multidimensional computational fluid dynamics (CFD) simulations were carried out to study mixture formation in a turbocharged port-injection natural gas engine. In order to achieve robust simulation results, multiple cycle simulation was employed to remove the inaccuracies of initial conditions setting. First, the minimal number of simulation cycles required to obtain convergent cycle-to-cycle results was determined. Based on this, the in-cylinder mixture preparation for three typical operating conditions was studied. The effects of fuel injection timing and intake valve open scheme on the mixture formation were evaluated. The results demonstrated that three simulation cycles are needed to achieve convergence of the results for the present study. The analysis of the mixture preparation revealed that only in the initial phase of the intake stroke, there is an obvious difference between the three operating conditions. At the spark timing, for 5500 rpm, full load condition mixture composition throughout the cylinder is flammable, and for 2000 rpm, 2 bar operating condition part of the mixture is lean and nonflammable. The fuel injection timing has an insignificant impact on the mixture flammability at the spark timing. It was observed that the designed nonsynchronous intake valve open scheme has stronger swirl and x-direction tumble motion than the baseline case, leading to better mixture homogeneity and spatial distribution. With an increase in volumetric efficiency, particularly at 2000 rpm, full load condition, by 4.85% compared to the baseline, which is in line with experimental observation.
机译:在本研究中,进行多维计算流体动力学(CFD)模拟,以研究涡轮增压的端口注射天然气发动机中的混合物形成。为了实现稳健的仿真结果,采用多个循环仿真来消除初始条件设置的不准确性。首先,确定获得收敛循环到循环结果所需的最小数量的模拟循环。基于此,研究了三种典型操作条件的缸内混合物制剂。评价燃料喷射正时和进气门开放方案对混合物形成的影响。结果表明,需要三个模拟循环来实现本研究结果的收敛性。对混合物制剂的分析显示,仅在进气冲程的初始阶段,三种操作条件之间存在明显的差异。在火花正时,对于5500rpm,整个圆柱体的全负载条件混合物组合物是易燃的,并且对于2000rpm,混合物的2巴的操作条件部分是稀薄的。燃料喷射正时对火花正时的混合物易燃性产生微不足道的影响。观察到设计的不同步进气门开放方案具有比基线壳体更强的涡流和X方向滚动运动,导致更好的混合均匀性和空间分布。随着基线相比,随着体积效率增加,特别是2000rpm,满载条件,符合基线的4.85%,这与实验观察一致。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2018年第5期| 051704.1-051704.10| 共10页
  • 作者

    Wu Zhenkuo; Han Zhiyu;

  • 作者单位

    Hunan Univ Coll Mech & Vehicle Engn State Key Lab Adv Design & Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

    Hunan Univ Coll Mech & Vehicle Engn State Key Lab Adv Design & Mfg Vehicle Body Changsha 410082 Hunan Peoples R China;

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