...
首页> 外文期刊>Energy Conversion & Management >Comparison of thermal, radical and chemical effects of EGR gases using availability analysis in dual-fuel engines at part loads
【24h】

Comparison of thermal, radical and chemical effects of EGR gases using availability analysis in dual-fuel engines at part loads

机译:使用部分负荷双燃料发动机中的可用性分析比较EGR气体的热,自由基和化学效应

获取原文
获取原文并翻译 | 示例
           

摘要

Dual-fuel engines at part load inevitably suffer from lower thermal efficiency and higher emission of carbon monoxide and unburned fuel. A quasi-two-zone combustion model has been developed for studying the second-law analysis of a dual-fuel (diesel-gas) engine operating under part-load conditions. The model is composed of two divisions: a single-zone combustion model with chemical kinetics for combustion of natural gas fuel and a subsidiary zone for combustion of pilot fuel. In the latter zone, the pilot fuel is considered as a heat source derived from two superposed Wiebe's combustion functions to account for contribution of pilot fuel in ignition of gaseous fuel and the rest of the total released energy. This quasi-two-zone combustion model is able to establish the development of combustion process with time and associated important operating parameters, such as pressure, temperature, heat release rate (HRR) and species concentration. The present work is an attempt to investigate the combustion phenomenon from second-law point of view at part load and using exhaust gas recirculation (EGR) to improve the aforementioned problems. Therefore, the availability analysis is applied to the engine from inlet valve closing (IVC) until exhaust valve opening (EVO). Various availability components are identified and calculated separately with crank position. In this paper, the various availability components are identified and calculated separately with crank position. Then the different cases of EGR (chemical, radical and thermal cases) are applied to the availability analysis in dual-fuel engines at part loads. It is found that the chemical case of EGR has negative effect and in this case the unburned chemical availability is increased and the work availability decreases in comparison with baseline engine (without EGR). While the thermal and radical cases have positive effects on the availability terms especially on the unburned chemical availability and work availability. The results show that second-law efficiency is increased by using low amount of radical and thermal cases of EGR. Implications are discussed in detail.
机译:在部分负荷下,双燃料发动机不可避免地遭受较低的热效率以及较高的一氧化碳和未燃烧燃料的排放。已开发了准两区燃烧模型,用于研究在部分负载条件下运行的双燃料(柴油-汽油)发动机的第二定律分析。该模型由两个部分组成:具有用于天然气燃料燃烧的化学动力学的单区燃烧模型和用于引燃燃料燃烧的辅助区。在后一个区域中,引燃燃料被认为是源自两个叠加的Wiebe燃烧功能的热源,以说明引燃燃料对气体燃料点火的贡献以及其余总释放能量。该准两区燃烧模型能够确定燃烧过程随时间的发展以及相关的重要操作参数,例如压力,温度,放热率(HRR)和物质浓度。当前的工作是尝试从第二定律的角度研究部分负荷下的燃烧现象,并使用排气再循环(EGR)来改善上述问题。因此,可用性分析从进气门关闭(IVC)到排气门打开(EVO)应用于发动机。通过曲柄位置分别识别和计算各种可用性组件。在本文中,使用曲轴位置分别确定和计算各种可用性组件。然后将EGR的不同情况(化学,自由基和热力情况)应用于部分负荷双燃料发动机的可用性分析。已发现,与基准发动机(不带EGR)相比,EGR的化学作用具有负面影响,在这种情况下,未燃烧的化学利用率增加,而工作利用率降低。尽管热和自由基的情况对可用性条件有积极影响,尤其是对未燃烧的化学物可用性和工作可用性。结果表明,通过使用少量的EGR自由基和热态情况,可以提高第二律效率。涵义进行了详细讨论。

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