石油学报(石油加工)
石油學報(石油加工)
석유학보(석유가공)
Acta Petrolei Sinica (Petroleum Processing Section)
2015年
5期
1129-1135
,共7页
胡鹏%孙平%王伟%刘义克%张振兴
鬍鵬%孫平%王偉%劉義剋%張振興
호붕%손평%왕위%류의극%장진흥
柴油机%生物柴油%碳烟%模拟
柴油機%生物柴油%碳煙%模擬
시유궤%생물시유%탄연%모의
diesel engine%biodiesel%soot%simulation
开展柴油机燃用生物柴油时的碳烟生成量的研究,基于广安碳烟模型提出了一种计算燃用生物柴油的碳烟排放公式。以实测示功图作为输入数据,结合喷雾与空气卷吸子模型、油滴蒸发燃烧子模型、传热子模型以及广安博之碳烟子模型,建立柴油机燃用生物柴油时碳烟排放的准维预测模型,计算碳烟生成量。结果表明,十三工况的计算值与试验实测碳烟排放量吻合,该模型适用于工程上模拟含氧燃料的碳烟排放。与柴油相比,由于柴油机燃用生物柴油时着火时刻提前,较早地达到碳烟生成的触发温度,燃烧开始阶段生成碳烟增加;但是由于生物柴油属于含氧燃料,其碳烟生成峰值和最终排出量均比柴油的低大约50%。
開展柴油機燃用生物柴油時的碳煙生成量的研究,基于廣安碳煙模型提齣瞭一種計算燃用生物柴油的碳煙排放公式。以實測示功圖作為輸入數據,結閤噴霧與空氣捲吸子模型、油滴蒸髮燃燒子模型、傳熱子模型以及廣安博之碳煙子模型,建立柴油機燃用生物柴油時碳煙排放的準維預測模型,計算碳煙生成量。結果錶明,十三工況的計算值與試驗實測碳煙排放量吻閤,該模型適用于工程上模擬含氧燃料的碳煙排放。與柴油相比,由于柴油機燃用生物柴油時著火時刻提前,較早地達到碳煙生成的觸髮溫度,燃燒開始階段生成碳煙增加;但是由于生物柴油屬于含氧燃料,其碳煙生成峰值和最終排齣量均比柴油的低大約50%。
개전시유궤연용생물시유시적탄연생성량적연구,기우엄안탄연모형제출료일충계산연용생물시유적탄연배방공식。이실측시공도작위수입수거,결합분무여공기권흡자모형、유적증발연소자모형、전열자모형이급엄안박지탄연자모형,건립시유궤연용생물시유시탄연배방적준유예측모형,계산탄연생성량。결과표명,십삼공황적계산치여시험실측탄연배방량문합,해모형괄용우공정상모의함양연료적탄연배방。여시유상비,유우시유궤연용생물시유시착화시각제전,교조지체도탄연생성적촉발온도,연소개시계단생성탄연증가;단시유우생물시유속우함양연료,기탄연생성봉치화최종배출량균비시유적저대약50%。
The study on the soot emission characteristics of diesel engine fueled with diesel or biodiesel was conducted , and a predictive formula based on hiroyasu soot submodel for soot emission of the biodiesel was proposed . Based on the measured indicator diagram , a quasi‐dimensional particulate emission model for the engine fueled with biodiesel was established by combining a fuel spray impinging and air entrainment submodel , droplet ’ s evaporation and combustion submodel ,the heat transfer submodel and hiroyasu soot submodel ,and the in‐cylinder soot mass was calculated .The results indicated that the theoretical results calculated agreed well with experimental results ,and the established model was suitable for soot emission prediction of diesel engine fueled with oxygenated fuels .The ignition start of biodiesel in engine was early to reach the trigger temperature of soot formation ,so soot emission increased in the initial stage of combustion .Since the oxygen concentration at combustion area was high due to the oxygenated properties of biodiesel ,the peak and final emission value of soot was reduced by more than 50%compared with that of 0# diesel .