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1.
介绍了柴油引燃甲醇双燃料燃烧对柴油机动力性和经济性的影响。在1台单缸、直喷、中冷柴油机上采用柴油引燃甲醇双燃料进行试验。结果显示甲醇柴油双燃料发动机在中高负荷及中高转速下运转可获得较好的燃油经济性。选择适当的引燃柴油量,双燃料发动机的动力性可以达到甚至超过原柴油的动力性。  相似文献   

2.
为研究甲醇裂解气-柴油混合燃料对柴油机排放的影响,设计了一种集成式尾气裂解甲醇反应器和进气共轨系统,将YC6A220型柴油机改装成燃烧由甲醇裂解而成的氢富气与柴油混合燃料的柴油机。实验研究表明,改装后的柴油机在中、高负荷运行时可以使NOx、HC和碳烟大幅度降低,且随着甲醇裂解气掺烧量的增加,各排放物质的减少量增加。  相似文献   

3.
介绍了在柴油中混合不同比例的乙醇对柴油机CH、NOx和碳烟排放的影响.采用柴油/乙醇制成不同比例乳化燃料在一台直喷、增压、中冷柴油机上进行试验.试验结果表明随着乙醇掺烧比例的增加,HC排放逐渐的增加,尤其在小负荷工况范围内,HC排放恶化严重;NOx排放在小负荷工况下有所改善;发动机碳烟排放逐渐的降低.  相似文献   

4.
为了改善防爆柴油机的燃烧和排放特性,在一台防爆改造后的柴油机上,进气道喷射甲醇,缸内直喷聚甲氧基二甲醚,研究甲醇质量比对聚甲氧基二甲醚/甲醇预混合引燃模式的影响。试验结果表明:采用聚甲氧基二甲醚/甲醇预混合引燃模式的防爆柴油机,随着甲醇质量比增加,燃烧始点晚于采用单燃料压燃模式时的燃烧始点,但是燃烧速度快,压升率峰值升高,放热率曲线呈现单峰形,放热率峰值与原机相比提高142%。同时,随着甲醇质量比增大预混合引燃模式对NO_x和碳烟排放的trade-off关系明显缓解,当质量比大于40%时,与原机单燃料模式相比碳烟和NO_x排放大幅降低。  相似文献   

5.
在一台由柴油机加装天然气供给系统改装而成的双燃料发动机上进行试验,分别探讨了预喷正时和预喷油量对柴油引燃天然气双燃料发动机燃烧和排放性能的影响。结果表明:随着预喷提前角的增大,热值折合油耗先减小后增大,最大压力升高率呈现下降-上升的趋势,爆压减小。同一预喷时刻,预喷油量增大,最大压力升高率和爆压增大,热值折合油耗先减小后增大。随着预喷提前角的增大,NOx、HC、CO和CH4比排放均减小。同一预喷时刻,随着预喷油量的增加,NOx比排放增大,HC、CO和CH4比排放减小。碳烟排放随预喷提前角的增大而略微下降,随预喷油量的增大而增大。  相似文献   

6.
以玉柴4D20柴油机为试验机型,在柴油中掺入10%、20%和30%体积比的大豆生物柴油配置成混合燃料,进行台架试验,测量并分析性能与排放试验数据。试验表明,燃用生物柴油混合燃料动力性稍微有点下降,燃油消耗率增加;排放方面可以大幅度降低碳烟的排放,但是NOx稍微增加。  相似文献   

7.
利用超声波雾化系统,在一台涡流室式柴油机上进行了进气道供乙醇的试验研究。研究结果表明:超声波乙醇雾化系统,能够满足进气道供乙醇的性能要求,使柴油机燃用乙醇/柴油过程中,表现出稳定的工作性能;柴油机燃用乙醇/柴油的NOx、CO和碳烟排放比原机低,尤其满负荷时碳烟降幅较大;能量消耗率与原机基本相当,HC排放比原机高。  相似文献   

8.
针对甲醇、生物柴油和聚甲氧基二甲醚PODE的优势,为了改善经济性,在一台CY25柴油机上分析不同引燃燃料对甲醇预混合气引燃燃烧模式燃烧特性的影响。试验结果表明:PODE引燃模式的排放特性较差,CO浓度相较生物柴油模式可高达2-3倍。在大甲醇质量比下HC排放浓度可高达生物柴油的5倍。甲醇质量比较小时促进了NO_(X)生成,增大质量比可以降低NO_(X)浓度。生物柴油引燃模式的排放特性随甲醇质量比变化较平稳,PODE引燃模式则随甲醇质量比变化增长较快。  相似文献   

9.
基于一套经改造的汽柴油混合双燃料发动机系统,在柴油发动机进气道安装汽油喷射系统实现缸内均质的混合气制备,通过上止点直喷柴油控制燃烧相位,通过调整汽柴油比例及EGR比例研究双燃料发动机燃烧性能。研究显示:相比原机,汽柴油比例增大,排气温度降低,当汽柴油比例提高到65%时,呈现出低温燃烧效果,同时降低NOx和碳烟的排放,燃烧持续期缩短,最大压力升高率增大,但是整体燃烧效果更优;从EGR特性及其对缸内燃烧过程和发动机燃烧性能的影响来看,此款双燃料发动机在小负荷时宜采用热EGR,在大负荷时宜采用冷EGR;双燃料发动机进气温度提升对燃油消耗率和碳烟并没有明显影响,而对于NOx来说,进气温度会改善发动机燃烧性能提升缸内燃烧温度,进而NOx排放会出现恶化现象。  相似文献   

10.
以S195柴油机为试验机型,在柴油中掺入10%、20%和30%体积比的葵花籽油配置成混合燃料,进行台架试验,测量并分析排放试验数据.试验表明葵花籽油-柴油混合燃料能改善缸内燃烧,降低NOx和碳烟的排放.  相似文献   

11.
The effects of recirculated exhaust gas on the characteristics of NOx and soot emissions under a wide range of engine loads were experimentally investigated by using a four-cycle, four-cylinder, swirl chamber type, water-cooled diesel engine operating at three engine speeds. The purpose of this study was to develop the EGR-control system for reducing NOx and soot emissions simultaneously in diesel engines. The EGR system is used to reduce NOx emissions, and a novel diesel soot removal device with a cylinder-type scrubber for the experiment system was specially designed and manufactured to reduce soot contents in the recirculated exhaust gas to the intake system of the engine. The experiments were performed at the fixed fuel injection timing of 4° ATDC regardless of experimental conditions. It was found that soot emissions in exhaust gases were reduced by 20 to 70% when the scrubber was applied in the range of the experimental conditions, and that NOx emissions decreased markedly, especially at higher loads, while soot emissions increased owing to the decrease in intake and exhaust oxygen concentrations, and the increase in equivalence ratio as the EGR rate is elevated.  相似文献   

12.
Numerical simulations of pilot fuel spray and compressing ignition for pre-mixed natural gas ignited by pilot diesel are described. By means of these modeling, the dual fuel and diesel fuel ignition mechanism of some phenomena investigated on an optional engine by technology of high-speed CCD is analyzed. It is demonstrated that the longer delay of ignition in dual fuel engine is not mainly caused by change of the mixture thermodynamics parameters. The analysis results illustrate that the ignition of pre-mixed natural gas ignited by pilot diesel taking place in dual fuel engine is a process of homogenous charge compression ignition.  相似文献   

13.

The use of biodiesel-blended fuels in diesel engines improves the engine performance parameters and the partial recovery of incomplete combustion products, while also increasing the level of NOx emissions. In this study; biodiesel obtained through the transesterification of waste chicken frying oil was mixed with diesel fuel (90% diesel + 10% biodiesel-B10), and was then used as fuel in a direct injection diesel engine. To reduce the increased NOx emissions caused by the use of B10 fuel, the steam injection method (which is one of the NOx reduction methods) was applied. Steam was injected into the intake manifold at different ratios (5%-S5, 10%-S10 and 15%-S15) and at the time of the induction stroke with the aid of an electronically controlled system. Based on the study results, it was observed that steam injection into the engine using B10 fuel improved both the engine performance and the exhaust emission parameters. It was determined that the S15 steam injection ratio resulted in the best engine performance and emissions parameters. In comparison to STD fuel; the highest increase observed at the S15 steam injection ratio in the effective engine power was 2.2%, while the highest decrease in the specific fuel consumption was 3.4%, the highest increase in the effective efficiency was 3.5%, and the highest decrease in NOx emissions was 13.7%.

  相似文献   

14.
为解决柴油醇在应用中存在的相分离、十六烷值低下等问题,提出一种由中碳醇 低分子醚 高分子聚合物 有机硝酸酯构成的复合添加剂.结果表明:添加1%~2%容积百分比的复合添加剂后,柴油醇的溶解度明显提高;并且发动机的冷启动试验也表明加入复合添加剂后,柴油醇的着火性能己同于柴油的水平.由发动机台架试验还研究了柴油和不同乙醇掺合率的柴油醇给与发动机的燃料经济性、排气烟度和THC、CO、NOx气体排放的影响.结果表明:柴油醇以重量计的比油耗较柴油的相应地增加,但以能量计的有效热效率却较柴油的略有提高;各种乙醇掺合率下的排气烟度都大幅地降低;NOx排放浓度则随负荷增加而逐渐增大,但在高负荷工况时,随乙醇掺合率的增加,NOx排放浓度呈下降趋势.  相似文献   

15.
Diesel engines have proven their utility in the transportation, agriculture, and power sectors in India. They are also potential sources of decentralized energy generation for rural electrification. Concerns on the long-term availability of petroleum diesel and the stringent environmental norms have mandated the search for a renewable alternative to diesel fuel to address these problems. Vegetable oils have been considered good alternatives to diesel in the past couple of years. However, there are many issues related to the use of vegetable oils in diesel engine. Jatropha curcas has been promoted in India as a sustainable substitute to diesel fuel. This study aims to develop a dual fuel engine test rig for evaluating the potential suitability of Jatropha oil as diesel fuel and for determining the performance and emission characteristics of an engine with Jatropha oil. The experimental results suggest that engine performance using Jatropha oil is slightly inferior to that of diesel fuel. The thermal efficiency of the engine was lower, while the brake-specific fuel consumption was higher with Jatropha oil compared with diesel fuel. The levels of nitrogen oxides (NOx) from Jatropha oil during the entire duration of the experiment were lower than those of diesel fuel. The reduction of NOx was found to be an important characteristic of Jatropha oil as NOx emission is the most harmful gaseous emission from engines; as such, its reduction is always the goal of engine researchers and makers. During the entire experiment, carbon monoxide (CO), hydrocarbon (HC), and carbon dioxide (CO2) emissions in the case of using Jatropha oil were higher than when diesel fuel was used. The higher density and viscosity of Jatropha oil causes lower thermal efficiency and higher brakespecific fuel consumption. The performance and emission characteristics found in this study are significant for the study of replacing diesel fuel from fossils with Jatropha oil in rural India, where the availability of diesel has always been a problem.  相似文献   

16.
基于多目标优化的柴油机VNT–vEGR系统开发研究   总被引:1,自引:0,他引:1  
为了在兼顾柴油机经济性和颗粒物排放的前提下,进一步降低氮氧化物(Nitrogen oxides,NO_x)排放以实现良好的柴油机综合性能,设计带文丘里管废气再循环系统的可变涡轮增压系统(Variable nozzle turbo+Venturi-exhaust gas recirculation,VNT+vEGR)。针对排气旁通阀涡轮增压(Wastegate,WG)柴油机原机,进行文丘里管废气再循环系统(Venturi-exhaust gas recirculation,v EGR)的设计和与可变涡轮增压器(Variable nozzle turbo,VNT)的匹配研究,并进行经济性、氮氧化物和颗粒物排放仿真计算研究。应用试验设计方法技术(Design of experiment,DoE)对VNT-vEGR系统进行多目标优化研究。研究结果表明,相比于配备排气旁通阀涡轮增压器的柴油机原机,对VNT-v EGR系统柴油机应用Do E进行多目标优化匹配后,欧洲稳态测试循环(European steady-state cycle,ESC)工况加权油耗值基本保持不变,氮氧化物加权排放量下降约49.5%,能够实现良好的综合性能。  相似文献   

17.
A cycle simulation program is developed and its predictions are compared with the test bed measurements of a direct injection (DI) diesel engine. It is based on the mass and energy conservation equations with phenomenological models for diesel combustion. Two modeling approaches for combustion have been tested; a multi-zone model by Hiroyasu et al (1976) and the other one coupled with an in-cylinder flow model. The results of the two combustion models are compared with the measured imep, pressure trace and NOx and soot emissions over a range of the engine loads and speeds. A parametric study is performed for the fuel injection timing and pressure, the swirl ratio, and the squish area. The calculation results agree with the measured data, and with intuitive understanding of the general operating characteristics of a DI diesel engine.  相似文献   

18.
In this study, experiments on the simultaneous reduction of smoke and NOx emissions of indirect-injection (IDI) diesel engines were conducted using a biodiesel fuel (BDF) and ethylene glycol mono-n-butyl ether (EGBE), which is an oxygenated fuel of mono-ethers, as a pre-processing method and by applying cooled EGR. A four-cylinder, water-cooled IDI diesel engine was used, while the engine performance and emission characteristics were considered using diesel fuel, BDF 100%, and a mixed fuel BDF and EGBE (maximum EGBE mixing ratio in mixed fuel: 20 vol-%). Results showed the BDF and the BDF and EGBE mix had significantly better smoke reduction effects than the diesel fuel. In particular, the use of the BDF and EGBE mix and the simultaneous application of 10% cooled EGR were confirmed to have reduced both smoke and NOx emissions.  相似文献   

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