...
首页> 外文期刊>Environmental Science and Pollution Research >Improvement of ternary fuel combustion with various injection pressure strategies in a toroidal re-entrant combustion chamber
【24h】

Improvement of ternary fuel combustion with various injection pressure strategies in a toroidal re-entrant combustion chamber

机译:环形重新进入燃烧室中各种喷射压力策略的三元燃料燃烧的改进

获取原文
获取原文并翻译 | 示例
           

摘要

The present experimental work focuses on the influence injection pressure and toroidal re-entrant combustion chamber in a single cylinder diesel engine fuelled with ternary fuel (diesel-biodiesel-ethanol) blend. Ternary fuel (TF) is prepared by blending 70% diesel, 20% biodiesel, and 10% ethanol blends and its fuel properties were investigated and compared with diesel fuel. Since the physic-chemical properties of TF are well behind the diesel fuel, it is proposed to be blended with 20ppm alumina nano additives which act as an ignition enhancer and catalytic oxidizer. The resulting fuel mixture (TF+20ppm alumina additive) is named as high performance fuel (HPF). Experimentations were conducted on HPF subjected to various injection pressures of 18MPa, 20MPa, 22MPa, and 24MPa respectively and are operated in toroidal re-entrant chamber geometry (TG) at an injection timing of 22 (o)bTDC. From experimentation, it was identified that, for TG-HPF, higher injection pressure of 22MPa ensued highest BTE (Brake Thermal Efficiency) of 35.5% and lowest BSEC (Brake Specific Fuel Consumption) of 10.13MJ/kWh owing to the pooled effect of higher swirl formation, improved atomization enhanced evaporation rate, and better air-fuel mixing. Emission wise TG-HPF operated at 22MPa lowered the HC (hydrocarbon), CO (carbon monoxide), and smoke emissions by 18.88%, 7.19%, and 5.02%, but with marginally improved NOx (oxides of nitrogen) and CO2 (carbon dioxide) emissions by 3.92% and 3.89% respectively. In combustion point of view, it is observed that injection pressure increased the cylinder pressure, heat release rate (HRR), and cumulative heat release rate (CHRR) by 5.35%, 5.08%, and 3.38% respectively indicating improved combustion rate as a result of enhanced atomization, evaporation, and high turbulence inducement. Overall, it is concluded that operating the ternary fuel at 22MPa injection pressure at toroidal re-entrant combustion chamber results in improved performance and minimized emissions.
机译:本实验工作侧重于影响用三元燃料(柴油机 - 生物柴油)混合物的单个汽缸柴油机中的影响注射压力和环形再入燃烧室。通过将70%柴油,20%生物柴油和10%乙醇混合物混合制备三元燃料(TF),并将其燃料性能与柴油燃料进行研究。由于TF的物理化学性质良好的柴油燃料,因此提出与20ppm氧化铝纳米添加剂混合,其充当点火增强剂和催化氧化剂。得到的燃料混合物(TF + 20ppm氧化铝添加剂)被命名为高性能燃料(HPF)。在对18MPa,20MPa,22MPa和24MPa的各种注射压力进行的HPF上进行实验,并在22(O)BTDC的注射时刻以环形再参赛室几何形状(Tg)操作。从实验中发现,由于TG-HPF,对于TG-HPF,由于汇总的效果,因此,对于TG-HPF,22MPa的喷射压力为22MPa的最高BTE(制动热效率)和最低的BSEC(制动器特定燃料)为10.13MJ / kWh的汇集效果旋流形成,改善雾化增强蒸发速率,更好的空气燃料混合。在22MPa下操作的发射明智的Tg-HPF降低了HC(烃类),CO(一氧化碳),烟雾排放量18.88%,7.19%和5.02%,但具有略微改善的NOx(氮气氧化物)和二氧化碳(二氧化碳)(二氧化碳) )排放量分别为3.92%和3.89%。在燃烧的观点中,观察到注射压力增加了气缸压力,热释放率(HRR)和累积释放速率(CHRR)的累积率分别为5.35%,5.08%和3.38%,表明结果改善了燃烧率增强雾化,蒸发和高湍流诱导。总的来说,得出结论,在环形重新进入燃烧室的22MPa注射压力下操作三元燃料导致改善的性能和最小化排放。

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