首页> 外文会议>SAE Conference >In-cylinder fuel drop size and wall impingement measurements
【24h】

In-cylinder fuel drop size and wall impingement measurements

机译:缸内燃料滴尺寸和墙壁冲击测量

获取原文

摘要

A significant fraction of hydrocarbon (HC) emissions occurs during the cold-start phase of an engine's operating cycle. Fuel drop sizes in the cylinder and impingement of fuel on the cylinder wall are two factors which can affect the HC emissions during this period. Therefore, measurements of in-cylinder drop sizes and wall fuel impingement were made on a steady flow bench at flow rates and manifold vacuum conditions which simulated desired engine operating conditions. Experimental variables included three injector types, two cylinder head geometries, three valve lifts, and two simulated engine speeds. Injector performance was assessed prior to the flow bench studies. Fuel injector performance was found to affect in-cylinder drop size and wall fuel impingement. The dual-jet injector produced two liquid streams which were not atomized into drops at a distance of 10 cm (a typical injector to valve distance) from the injector top. The pintle and air-assist injectors produced finer sprays with line-of-sight Sauter Mean Diameters (SMD's) of 119 μm and 39 μm, respectively. SMD's in the cylinder ranged from 15 to 140 μm for the dual-jet injector and from 15 to 70 μm for the pintle injector. With the air-assist injector, which produced the smallest line-of-sight SMD, the SMD's in the cylinder ranged from 5 to 20 μm and cylinder wall impingement was only a third to half as much as impingement with the pintle or dual-jet injector.
机译:在发动机操作循环的冷启动阶段期间发生显着的烃(HC)排放。气缸中的燃料滴尺寸和气缸壁上的燃料冲击是在此期间可以影响HC排放的两个因素。因此,在模拟所需发动机操作条件的流速和歧管真空条件下对圆柱滚筒尺寸和壁燃料冲击进行测量。实验变量包括三种喷射器类型,两个气缸盖几何形状,三个阀门提升和两个模拟发动机速度。在流动板材研究之前评估喷射器性能。发现燃料喷射器性能会影响圆柱体滴尺寸和壁燃料冲击。双喷射器产生了两个液体流,其在从喷射器顶部的10cm(典型的喷射器到阀距离)的距离下液滴不会雾化。叉子和空气辅助喷射器产生更细的喷雾剂,分别具有119μm和39μm的视线落直径(SMD)。用于双喷射器的滚筒中的SMD在15至140μm的范围内,对于针线喷射器,15至70μm。通过生产最小的视线SMD的空气辅助喷射器,气缸中的SMD在5到20μm和圆柱壁冲击中仅为3至半的撞击,与叉子或双射流冲击一样注射器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号