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首页> 外文期刊>International Journal of Automotive Technology >LOW TEMPERATURE PREMIXED COMBUSTION WITHIN A SMALL BORE HIGH SPEED DIRECT INJECTION (HSDI) OPTICALLY ACCESSIBLE DIESEL ENGINE USING A RETARDED SINGLE INJECTION
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LOW TEMPERATURE PREMIXED COMBUSTION WITHIN A SMALL BORE HIGH SPEED DIRECT INJECTION (HSDI) OPTICALLY ACCESSIBLE DIESEL ENGINE USING A RETARDED SINGLE INJECTION

机译:使用延迟单次喷射在小孔高速直接喷射(HSDI)光学可访问柴油机中进行低温预混合燃烧

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摘要

An optically accessible single-cylinder high speed direct-injection (HSDI) Diesel engine equipped with a Bosch common rail injection system was used to study low temperature Modulated Kinetics (MK) combustion with a retarded single main injection. High-speed liquid fuel Mie-scattering was employed to investigate the liquid distribution and evolution. By carefully setting up the optics, three-dimensional images of fuel spray were obtained from both the bottom of the piston and the side window. The NO{sub}x emissions were measured in the exhaust pipe. The influence of injection pressure and injection timing on liquid fuel evolution and combustion characteristics was studied under similar fuel quantities. Interesting spray development was seen from the side window images. Liquid impingement was found for all of the cases due to the small diameter of the piston bowl. The liquid fuel tip hits the bowl wall obliquely and spreads as a wall jet in the radial direction of the spray. Due to the bowl geometry, the fuel film moves back into the central part of the bowl, which enhances the air-fuel mixing process and prepares a more homogeneous air-fuel mixture. Stronger impingement was seen for high injection pressures. Injection timing had little effect on fuel impingement. No liquid fuel was seen before ignition, indicating premixed combustion for all the cases. High-speed combustion video was taken using the same frame rate. Ignition was seen to occur on or near the bowl wall in the vicinity of the spray tip, with the ignition delay being noticeably longer for lower injection pressure and later injection timing. The majority of the flame was confined to the bowl region throughout the combustion event. A more homogeneous and weaker flame was observed for higher injection pressures and later injection timing. The combustion structure also proves the mixing enhancement effect of the liquid fuel impingement. The results show that ultra-low sooting combustion is feasible in an HSDI diesel engine with a higher injection pressure, a higher EGR rate, or later injection timing, with little penalty on power output. It was also found that injection timing has more influence on HCCI-like combustion using a single main injection than the other two factors studied. Compared with the base cases, simultaneous reductions of soot and NO{sub}x were obtained by increasing EGR rate and retarding injection timing. By increasing injection pressure, NO{sub}x emissions were increased due to leaner and faster combustion with better air-fuel mixing. However, smoke emissions were significantly reduced with increased injection pressure.
机译:配备博世共轨喷射系统的光学可访问的单缸高速直接喷射(HSDI)柴油发动机用于研究延迟单次主喷射的低温调制动力学(MK)燃烧。利用高速液体燃料的Mie散射研究了液体的分布和演化。通过仔细设置光学系统,从活塞底部和侧窗都获得了燃油喷雾的三维图像。在排气管中测量了NOx排放。研究了在相似燃料量下,喷射压力和喷射正时对液体燃料演变和燃烧特性的影响。从侧窗图像可以看到有趣的喷雾形成。由于活塞碗的直径小,在所有情况下都发现有液体撞击。液体燃料喷嘴倾斜地撞击碗壁,并作为壁射流沿喷雾的径向方向扩散。由于转鼓的几何形状,燃料膜会移回到转鼓的中央部分,从而增强了空燃混合过程并制备了更加均匀的空燃混合物。对于高注射压力,可以看到更强的冲击力。喷射正时对燃料撞击影响很小。点火前未见液体燃料,表明所有情况下均进行了预混燃烧。使用相同的帧速率拍摄高速燃烧视频。观察到在喷嘴尖端附近的碗壁上或碗壁附近发生了点火,对于较低的喷射压力和较晚的喷射正时,点火延迟明显更长。在整个燃烧过程中,大部分火焰都局限于碗状区域。对于较高的注射压力和较晚的注射时间,观察到更均匀且较弱的火焰。燃烧结构还证明了液体燃料撞击的混合增强效果。结果表明,在喷射压力较高,EGR率较高或喷射定时较晚的HSDI柴油机中,超低烟so燃烧是可行的,对功率输出的影响很小。还发现,与其他两个研究因素相比,使用单次主喷射喷射正时对类HCCI燃烧的影响更大。与基本情况相比,通过提高EGR率和延迟喷射正时可以同时减少烟灰和NO {sub} x。通过增加喷射压力,由于更稀薄,更快速的燃烧以及更好的空燃混合,NO {sub} x排放量得以增加。但是,随着喷射压力的增加,烟气排放量也大大减少。

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