农业工程学报
農業工程學報
농업공정학보
2013年
24期
63-71
,共9页
崔慧峰%罗福强%王子玉%董少锋
崔慧峰%囉福彊%王子玉%董少鋒
최혜봉%라복강%왕자옥%동소봉
柴油机%数值模拟%生物燃油%流动特性%空化%喷嘴%小桐子油
柴油機%數值模擬%生物燃油%流動特性%空化%噴嘴%小桐子油
시유궤%수치모의%생물연유%류동특성%공화%분취%소동자유
computer simulations%diesel engine%biofuels%fluidity%cavitation%nozzle%Jatropha curcas oil
为对燃用小桐子油柴油机的燃油喷射及雾化进行系统研究,建立了考虑燃油黏度、密度及气泡数密度随喷射条件变化的三维气液两相流空穴模型,在对所建数学模型验证的基础上,进行了喷油压力、喷油背压及燃油温度对喷嘴内小桐子油空穴流动特性影响的数值模拟,并与喷嘴内柴油的流动特性进行了对比分析。结果表明:应用小桐子油作燃油时,随着喷油压力的增加,喷孔出口燃油的平均流速及质量流量逐渐增加,流量系数逐渐降低,但空化效应变化并不明显;喷油背压的变化对喷嘴内小桐子油的流动特性影响较小;随着燃油温度的升高,喷孔出口平均流速、质量流量及流量系数均大幅提高,空化效应显著增强。相同喷射条件下,小桐子油的空化效应及喷孔出口平均流速均低于柴油,但其质量流量及流量系数是否低于柴油,还受到燃油温度的影响。该研究可为燃用小桐子油柴油机工作过程的深入分析提供参考。
為對燃用小桐子油柴油機的燃油噴射及霧化進行繫統研究,建立瞭攷慮燃油黏度、密度及氣泡數密度隨噴射條件變化的三維氣液兩相流空穴模型,在對所建數學模型驗證的基礎上,進行瞭噴油壓力、噴油揹壓及燃油溫度對噴嘴內小桐子油空穴流動特性影響的數值模擬,併與噴嘴內柴油的流動特性進行瞭對比分析。結果錶明:應用小桐子油作燃油時,隨著噴油壓力的增加,噴孔齣口燃油的平均流速及質量流量逐漸增加,流量繫數逐漸降低,但空化效應變化併不明顯;噴油揹壓的變化對噴嘴內小桐子油的流動特性影響較小;隨著燃油溫度的升高,噴孔齣口平均流速、質量流量及流量繫數均大幅提高,空化效應顯著增彊。相同噴射條件下,小桐子油的空化效應及噴孔齣口平均流速均低于柴油,但其質量流量及流量繫數是否低于柴油,還受到燃油溫度的影響。該研究可為燃用小桐子油柴油機工作過程的深入分析提供參攷。
위대연용소동자유시유궤적연유분사급무화진행계통연구,건립료고필연유점도、밀도급기포수밀도수분사조건변화적삼유기액량상류공혈모형,재대소건수학모형험증적기출상,진행료분유압력、분유배압급연유온도대분취내소동자유공혈류동특성영향적수치모의,병여분취내시유적류동특성진행료대비분석。결과표명:응용소동자유작연유시,수착분유압력적증가,분공출구연유적평균류속급질량류량축점증가,류량계수축점강저,단공화효응변화병불명현;분유배압적변화대분취내소동자유적류동특성영향교소;수착연유온도적승고,분공출구평균류속、질량류량급류량계수균대폭제고,공화효응현저증강。상동분사조건하,소동자유적공화효응급분공출구평균류속균저우시유,단기질량류량급류량계수시부저우시유,환수도연유온도적영향。해연구가위연용소동자유시유궤공작과정적심입분석제공삼고。
The formation and development process of fuel spray has a great influence on fuel atomization, fuel evaporation, fuel-air mixing, and combustion, which can further influence the properties of a diesel engine. The atomization process and its quality are affected not only by the mutual friction between the fuel spray and ambient air, but also by the flow behavior in the nozzle orifice such as the cavitation effect and the turbulent flow among which the flow disturbance induced by the cavitation is the first important factor effecting the atomization of fuel spray. A lot of research studies on an alternative fuel, Jatropha curcas oil (JCO), for diesel fuel have been carried out by both domestic and international scholars with the focus mainly on the preparation methods, and physical and chemical properties as well as the performance and the pollutant emissions of a diesel engine fueled with JCO. Nevertheless, the issues related to a systematic study of the cavitation flow and the spray outflow characteristics, which have a great influence on the injection and atomization of JCO, are seldom reported. In the present paper, a three-dimensional gas-liquid two-phase model of cavitation flow was developed, which took the influence of injection conditions on fuel viscosity, fuel density, and bubble number density into consideration. After the validity of the model was verified, a three-dimensional numerical simulation that was about the influences of injection pressure, injection back pressure and fuel temperature on the cavitation flow of JCO in a diesel nozzle was carried out. The results showed that: the mean flow velocity at outlet (MFVO) and the mass flow rate is enhanced gradually with the increment of injection pressure, and the discharge coefficient decreases simultaneously. However, the cavitation effect does not change significantly. The injection backpressure has little influence on the flow characteristics of JCO in the diesel nozzle. MFVO, mass flow rate, and discharge coefficient raise remarkably with the increment of JCO temperature, and at the same time, the cavitation effect is significantly enhanced. The cavitation effect and MFVO of JCO are lower than those of diesel fuel under the same injection condition, but whether the mass flow rate and the discharge coefficient of JCO are higher than those of diesel fuel also depends on the fuel temperature. The results obtained indicate that the increment of JCO temperature will remarkably enhance the cavitation effect, strengthen the flow disturbance, and improve MFVO and the cycle fuel injection quantity, which are beneficial for the fuel injection, atomization, and the performance of a diesel engine. The research can provide references for in-depth analysis on the working process of diesel engine fueled with JCO.