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1.
在某1.6L发动机的基础上进行纵向开发,以此来实现高压缩比米勒循环发动机。利用大型三维计算流体动力学(CFD)软件STAR‐CD对采用进气门晚关策略的高压缩比米勒循环发动机进行数值模拟,对比分析了采用两种几何形状活塞的米勒循环发动机的缸内气体流动模式及燃烧过程。计算结果表明:经过结构优化的活塞方案相对于原方案可以获得较优的缸内流动及燃烧特性。计算结果将为实际开发中的高压缩比米勒循环发动机的活塞选型及燃烧室优化提供理论及数据支撑。  相似文献   

2.
根据自由活塞发动机和直线电机之间存在的能量守恒关系,利用所选择的商用直线电机进行压燃式自由活塞发动机的参数匹配设计.通过分析得到直线电机与自由活塞发动机主要结构参数之间的关系,再对系统的工作过程、自由活塞发动机的换气和燃烧过程进行CFD仿真,反复进行迭代计算,确定压燃式自由活塞发动机的具体几何结构参数.从参数匹配关系式...  相似文献   

3.
利用异辛烷与正庚烷配比不同辛烷值燃料,在快速压缩机上进行可控自燃(CAI)燃烧试验,研究了不同边界条件下燃料辛烷值对CAI燃烧特性的影响规律。结果表明,在其他边界条件不变的情况下,随着燃料辛烷值的增加,最大压力升高率降低,最大压力升高率出现时刻延迟,燃烧温度开始迅速上升的时刻延迟,燃烧温度的最大值减小,燃烧始点延迟,燃烧持续期延长。  相似文献   

4.
高原环境下油品对柴油机燃烧特性的影响研究   总被引:3,自引:0,他引:3  
在模拟高原条件下,针对3种不同品质的柴油(十六烷值和馏分)对某增压柴油机的燃烧特性的影响规律进行了研究分析,并据此简要分析在高原运行时出现活塞烧蚀故障与所用油品的关系。结果显示:目前在用柴油由于其十六烷值低,柴油不易被压燃着火,滞燃期长,且初馏温度低,柴油容易蒸发,预混合燃烧期内积累的热量多,造成缸内压力的升高速率增大,燃烧过程粗暴;海拔升高,空气密度下降,柴油的着火时间延长,燃烧速度加快,最大压力升高率增大,由此产生强烈的热负荷和机械负荷冲击,容易造成活塞烧蚀。  相似文献   

5.
针对匹配中置高压喷油器的直喷汽油光学发动机,试验研究了不同喷油时刻及喷油压力下的缸内燃烧及喷雾发展特性,分析了燃油喷射控制参数对直喷汽油机缸内喷雾及燃烧的影响规律。研究结果表明:随第三段喷油时刻(θ_(SOI3))提前,燃烧持续期与滞燃期均先减小后增大,燃烧特征参数均在θ_(SOI3)=120°BTDC时存在明显拐点,此时平均指示压力(p_(mi))的循环变动系数C_(OVpmi)相对较小;第三段喷油时刻过晚,活塞上行距上止点较近,易导致油束冲击活塞表面;提高喷油压力可缩短燃烧持续期,有助于改善燃烧定容度,但喷油压力过大,油束贯穿距进一步延长,油束冲击缸壁的倾向增加,滞燃期及燃烧持续期反而延长。  相似文献   

6.
基于Atkinson理论循环建立混合动力汽油机的性能仿真模型,确定出合适的压缩比与配气正时。分别采用增加活塞顶面凸起高度(上凸型燃烧室)和减小缸盖上燃烧室高度的方式来满足Atkinson循环汽油机对压缩比的要求。同时为适应紧凑结构减小气门升程、直径(紧凑型燃烧室)。通过三维CFD计算分析,比较了两种燃烧室缸内燃烧及流动特性,发现紧凑型燃烧室能够在火核形成及扩散时期在缸内产生更高的湍动能,有利于加快火焰传播,使燃烧持续期缩短9.8%~24.4%,可显著提高燃油经济性。在混合动力用Atkinson循环发动机开发中使用紧凑型燃烧室,具有重要的应用价值。  相似文献   

7.
以HCCI燃烧过程为主要研究对象的模拟燃烧系统   总被引:1,自引:0,他引:1  
所论述的模拟燃烧系统是针对均质混合气压燃特性试验研究开发研制的装置,主要由燃烧系统主体部分、混合气配给系统等组成。该装置具备定压燃烧过程、复合燃烧过程以及定容燃烧过程的研究试验功能,且具有良好的边界条件可控性。燃烧系统压缩终了压力可达到2.6MPa,活塞最高速度为5m/s,平均速度为2.18m/s。  相似文献   

8.
利用Access建立了一个内燃机数据库,库中包含了柴油机活塞数据表,其中主要设计参数包括压缩高度、活塞总高度、销径、销长度等。利用VC编程实现对数据库的管理,根据设计需要可以将活塞各主要参数之间的关系显示在坐标图上,可直观地分析得出结论,从而提高活塞设计效率。  相似文献   

9.
《JSAE Review》2002,23(3):291-296
Effects of squish area location on tumble and squish flow were investigated to control the knock in an SI engine. For the exhaust squish piston, tumble flow is collapsed by the exhaust squish clearance during the compression stroke, so that the compression-squish flow is strong. For the intake squish piston, tumble flow impinges on the edge of squish area and the induction of it into the squish area is controlled. The compression-squish flow is weakened and reverse-squish flow grows strong. This led to realization of a high heat release at late stage combustion. Simultaneously, the decrease of cycle-by-cycle variation of initial burn is realized. Consequently, knocking is controlled compared with a flat piston.  相似文献   

10.
This work presents the modeling and simulation of a novel free piston linear alternator. The modeling consists of two parts, a thermodynamic model and dynamic model, and these are combined and solved by matlab/simulink. The effects of various intake pressures, moving masses, ignition positions, and resistance loads are studied. The simulation results show that the free piston motion is different from that of the traditional internal combustion engine (ICE). The free piston accelerates and decelerates more quickly at the end of the stroke and additionally, the top dead center is free and changes accordingly with the studied parameters. Thus, a high compression ratio can be easily achieved.  相似文献   

11.
通过耦合DETCHEM软件包及CHEMKIN软件包中的SENKIN模块,对活塞顶及活塞冠周边涂有催化剂的HCCI发动机燃烧过程进行了数值计算,建立了多区模型。针对在处理缝隙区存在催化剂时出现的一些问题,提出了4种不同的计算模型,对比分析了这4种计算模型与基准模型在缸内温度、放热率和HC,NOx以及CO排放等方面的差别。  相似文献   

12.
MFB2带圆弧段凸轮优化设计   总被引:2,自引:1,他引:1  
构造了MFB2带圆弧段凸轮型线,该类型线具有大的气门开启时面值。给出了型线的构造和设计方法.在机构动力学分析的基础上,建立了以凸轮型线时面值为目标函数,以气门落座速度、凸轮最大接触应力、凸轮最小曲率半径、气门活塞最小距离等为约束条件的动态优化设计模型。数值算例表明,该型线具有很好的充气性能及较好的动力性能。  相似文献   

13.
高原环境对缸内燃烧及壁面油膜的影响研究   总被引:2,自引:0,他引:2  
为了分析高原环境下缸内燃烧过程及壁面油膜生成规律,采用 CFD 方法对不同海拔条件下柴油机燃烧过程进行了三维仿真计算,着重分析了海拔对壁面油膜的影响。结果表明:随海拔升高,过量空气系数降低,滞燃期延长,着火推迟,燃烧恶化,柴油机性能下降;高原条件对壁面油膜生成有较大影响,壁面累计油膜质量随海拔升高而增大,4500 m 海拔下壁面油膜累计质量最大可达19 mg ,约占总油量的8%;壁面油膜在燃油喷射弹着点处形成,随着时间推移,油膜向活塞边缘扩散,在高海拔条件下,燃烧结束时活塞边缘仍有油膜残留。  相似文献   

14.
在自制的基于摩擦力的活塞环槽温度限值测试装置上,采用火焰加热活塞模拟内燃机燃烧室的燃烧过程,在加热强度一定的条件下,分别研究不同冷却强度、配对副以及润滑介质时缸套-活塞环间的摩擦力随活塞环槽温度的变化。结果发现:活塞环槽温度限值随冷却强度的增大而逐渐提高;CKS环与镀铬缸套配副时比镀铬环以及喷钼环与镀铬缸套配副时活塞环槽温度限值高;SAE15W/40润滑油作为润滑介质时比SAE40,SAE10W/30润滑油作为润滑介质时活塞环槽温度限值高。  相似文献   

15.
In-cylinder charge density at top dead center is an important parameter of diesel engines and is influenced by intake pressure, intake temperature, and compression ratio. The effects of charge density on fuel spray, combustion process, and emissions were investigated by using a constant volume bomb and a heavy-duty diesel engine. Spray development resistance increased with the increase of the charge density in the constant volume bomb. It was found that short spray penetration was accompanied by a large spray cone angle in the former stage with high charge density. However, the equivalence ratio was lowered and the degree of homogeneity of the mixture was increased in the later stage owing to the rapid interaction of fuel and gas at a high mixing rate. Combining the first law of thermodynamics and the second law of thermodynamics for analysis, as the charge density increased, the gross indicated thermal efficiency (ITEg) was improved. However, pumping loss had to be considered with higher charge density. Under this condition, the brake thermal efficiency (BTE) trend was increased initially and decreased subsequently. Under high-load operation (1200 r/min BMEP, 2.0 MPa), the minimum charge density value of 44.8 kg/m3 was found to be reasonable. This charge density was suitable for combustion and brought about minimum exhaust energy and trade-off emissions. Moreover, by analyzing two operation conditions in terms of the maximum BTE with the Miller and the conventional cycles, compression temperature and combustion temperature were reduced in the Miller cycle with the charge density 44.8 kg/m3. A high Cp/Cv could improve the cylinder exergy/power conversion process by its positive effect of increasing the specific heat ratio. Owing to the interaction between a high Cp/Cv and exergy loss to heat transfer, the condition with the minimal charge density could produce more piston work.  相似文献   

16.
Compression ignition of homogeneous charges in internal combustion (IC) engines is expected to offer high efficiency of DI diesel engines without high levels of NOx and particulate emissions. This study is intended to find ways of extending the rich limit of HCCI operation, one of the problems yet to be overcome. Exhaust emissions characteristics are also explored through analyses of the combustion products. DME fuel, either mixed with air before induction or directly injected into the combustion chamber of a rapid compression and expansion machine, is compressed to ignite under various conditions of compression ratio, equivalence ratio, and injection timing. The characteristics of the resulting combustion and exhaust emissions are discussed in terms of the rate of heat release computed from the measured pressure, and the concentrations of THC, CO, and NOx are measured by FT-IR and CLD. The experimental data to date show that operation without knock is possible with mixtures of higher equivalence ratio when DME is directly injected rather than when it is inducted in the form of a perfectly homogeneous fuel-air mixture. Although fuel injected early in the compression stroke promotes homogeneity of the DME-air mixture in the cylinder, it causes the mixture to ignite too early to secure good thermal efficiency and knock-free operation at high loads. Low temperature reactions occur at about 660K regardless of the fueling methods, fuel injection timing and equivalence ratio. The main components of hydrocarbon emissions turned out to be unburned fuel (DME), formaldehyde and methane.  相似文献   

17.
针对增压气道喷射汽油机进行了发动机换气与压缩过程对燃烧特性的影响研究,对比了两种状态下的气门升程与配气正时,基于发动机试验台架测试数据,重点分析了发动机动力性、经济性和燃烧特性。试验数据表明了配气相位的改变对燃烧有较大的影响,可使燃烧效率大幅度提高,爆震倾向减小。同时基于AVL-fire软件进行发动机进气与压缩过程三维CFD分析,分析结果表明:对燃烧特性的影响不能仅靠瞬态滚流比和缸内平均湍动能进行判断,真正影响燃烧的是火花塞附近湍动能的变化,即发动机换气与压缩过程对燃烧特性的影响来自压缩上止点火花塞附近的湍动能。  相似文献   

18.
均质柴油燃烧(HDC)采用二级涡轮增压、优化EGR率,采用涡轮前预催化转化器(PTC)和氧化催化转化器(DOC)降低排放。博世oCCS采用降低压缩比、降低进气涡轮强度及合适的活塞顶燃烧室形状,特别是优化燃油喷射,来达到降低NOx和微粒排放。  相似文献   

19.
建立了柴油-天然气双燃料发动机活塞、活塞销、连杆的有限元模型,分析了活塞在不同替代率下标定功率工况时的温度分布情况,将活塞上某些点处的仿真值与实测值进行了对比,误差满足工程要求.将温度场分布作为热机耦合的初始条件加载到活塞上,计算活塞热机耦合作用下的应力场和变形场.结果表明:活塞最高温度值出现在活塞顶部偏离燃烧室一侧,热机耦合的最大应力出现在销座内侧上部,最大变形值出现在活塞顶部偏离燃烧室的外侧,并随着替代率的增加而升高.  相似文献   

20.
在1台排量为2.8L的单缸柴油机上,通过燃烧过程不断强化,将输出功率从73kW提高到150kW。研究分为两个阶段:第一阶段通过提高进气压力、降低进气阻力、优化配气相位、优化喷油系统参数,将输出功率从73kW提高到92kW;第二阶段采用了电控单体泵供油系统,并优化喷孔参数、进一步提高进气压力、降低进气温度、提高发动机转速,将输出功率提高到150kW。放热率分析结果表明:对于高强化燃烧过程,虽然预混和扩散燃烧阶段的放热速率大幅度增加,但其放热量占总放热量的比率下降,后燃阶段的放热比率显著增加。因此加强扩散燃烧阶段的放热速率仍然是高强化燃烧过程面临的主要问题。  相似文献   

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