首页> 外文期刊>Combustion theory and modelling >Simulation of spray development and turbulent combustion processes in low and high speed diesel engines by the CMC-ISR model
【24h】

Simulation of spray development and turbulent combustion processes in low and high speed diesel engines by the CMC-ISR model

机译:用CMC-ISR模型模拟低速和高速柴油机中的喷雾形成和湍流燃烧过程

获取原文
获取原文并翻译 | 示例
           

摘要

Simulation is performed to analyse the characteristics of turbulent spray combustion in conventional low and high speed diesel engine conditions. Turbulence-chemistry interaction is resolved by the Conditional Moment Closure (CMC) model in the spatially integrated form of an Incompletely Stirred Reactor (ISR). After validation against measured pressure traces, characteristic length and time scales and dimensionless numbers are estimated at the locations of sequentially injected fuel groups. Conditional flame structures are calculated for sequentially evaporated fuel groups to consider different available periods for ignition chemistry. Injection overlaps the combustion period in the high rpm engine, while most combustion occurs after injection and evaporation are complete in the low rpm engine. Ignition occurs in rich premixture with the initial peak temperature at the equivalence ratio around 2-4 as observed in Dec [2]. It corresponds to the most reactive mixture fraction of the minimum ignition delay for the given mixture states. Combustion proceeds to lean and rich sides in the mixture fraction space as a diffusion process by turbulence. The mean scalar dissipation rates (SDRs) are lower than the extinction limit to show stability of diffusion flames throughout the combustion period.
机译:进行仿真以分析常规低速和高速柴油机条件下的湍流喷雾燃烧特性。湍流-化学相互作用通过条件矩封闭(CMC)模型以不完全搅拌反应器(ISR)的空间整合形式解决。在根据测得的压力迹线进行验证后,在顺序喷射的燃料组的位置估算了特征长度和时间标度以及无量纲数。为顺序蒸发的燃料组计算条件火焰结构,以考虑点火化学的不同可用时间。在高转速发动机中,喷射与燃烧期重叠,而在低转速发动机中,大部分燃烧发生在喷射和蒸发完成之后。如在12月[2]中所观察到的那样,在浓混合气中会发生点火,其初始峰值温度在2-4左右的当量比处。对于给定的混合物状态,它对应于最小点火延迟中最具反应性的混合物分数。作为湍流的扩散过程,燃烧在混合馏分空间中向稀薄侧和浓侧流动。平均标量耗散率(SDR)低于熄灭极限,以显示整个燃烧期间扩散火焰的稳定性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号