Journal of Automotive Safety and Energy ›› 2021, Vol. 12 ›› Issue (3): 410-416.DOI: 10.3969/j.issn.1674-8484.2021.03.017
• Automotive Energy Efficiency and Environment Protection • Previous Articles
ZHANG Zhiyong1,2(
), GAO Dingwei1,2, LAI Haipeng1,2, ZHANG Bin1,2, XING Huafeng1,2
Received:2021-04-03
Online:2021-09-30
Published:2021-10-09
CLC Number:
ZHANG Zhiyong, GAO Dingwei, LAI Haipeng, ZHANG Bin, XING Huafeng. Optical diagnostics of charge stratification compression ignition in high compression ratio gasoline engine[J]. Journal of Automotive Safety and Energy, 2021, 12(3): 410-416.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.journalase.com/EN/10.3969/j.issn.1674-8484.2021.03.017
| [1] | Lee B, Oh H, Han S K, et al. Development of high efficiency gasoline engine with thermal efficiency over 42% [R]. SAE Tech Paper, 2017-01-2229. |
| [2] | Nakata K, Nogawa S, Takahashi D, et al. Engine technologies for achieving 45% thermal efficiency of S.I engine [R]. SAE Tech Paper, 2015-01-1896. |
| [3] | Sellnau M, Foster. M, Moore W, et al. Pathway to 50% Brake thermal efficiency using gasoline direct injection compression ignition [R]. SAE Tech Paper, 2019-01-1154. |
| [4] | Ikeya K, Takazawa M, Yamada T, et al. Thermal efficiency enhancement of a gasoline engine [R]. SAE Tech Paper, 2015-01-1263. |
| [5] | Tagishi R, Ikeya K, Takazawa M, et al. Technology for realization of gasoline engine brake thermal efficiency of 45%[J]. Honda R&D Tech Rev, 2015, 27(2):1-11. |
| [6] | 王志, 王建昕, 帅石金, 等. 火花点火对缸内直喷汽油机HCCI 燃烧的影响[J]. 内燃机学报, 2005, 23(2):105-112. |
| WANG Zhi, WANG Jianxin, SHUAI Shijin, et al. Effects of spark ignition on HCCI combustion in gasoline direct injection engines[J]. Trans Chin Soc Int Combu Engines (CSICE). 2005, 23(2):105-112. (in Chinese) | |
| [7] | Kiminori K, Masanobu T, Teruyashi M. Advanced ignition control technology for HCCI combustion[J]. Honda R&D Tech Rev, 2014, 26(2):65-73. |
| [8] | 王志, 王建昕, 帅石金, 等. 缸内直喷燃料改质控制HCCI着火时刻和燃烧速率的研究[J]. 自然科学进展, 2006, 16(9):1191-1195. |
| WANG Zhi, WANG Jianxin, SHUAI Shijin, et al. Reserch on GDI-HCCI spark timing and combustion speed by fuel reformed[J]. Proc Nat Sci, 2006, 16(9):1191-1195. (in Chinese) | |
| [9] | 陈权, 谢辉, 江维海, 等. NVO策略下HCCI汽油机缸内残余废气率估计[J]. 燃烧科学与技术, 2016, 22(6):499-505. |
| CHEN Quan, XIE Hui, JIANG Weihai, et al. Estimation of residual gas fraction in HCCI gasoline engine with NVO strategy[J]. J Combus Sci Tech, 2016, 22(6):499-505. (in Chinese) | |
| [10] | Patrick B, Per T, Bengt J, Investigation and comparison of residual gas enhanced HCCI using trapping (NVO HCCI) or rebreathing of residual gases[R]. SAE Tech Paper, 2011-01-1772. |
| [11] |
Martz J B, Kwak H, Im H G, et al. Combustion regime of a reacting front propagating into an auto-igniting mixture[J]. Proc Combu Inst, 2010. 33(2):3001-3006.
doi: 10.1016/j.proci.2010.07.040 URL |
| [12] | 赖海鹏, 宋东先, 裴培. 汽油机分层燃烧引燃汽油压燃试验研究[J]. 小型内燃机与车辆技术, 2017, 46(2):21-28. |
| LAI Haipeng, SONG Dongxian, PEI Pei. Experimengtal study on stratified combustion induced compression-ignition in gasoline engine[J]. Small Int Combu Engine Vehi Tech, 2017, 46(2):21-28. (in Chinese) |
| [1] | FU Xueqing, HE Bangquan, XU Sipeng, ZHAO Hua, GUO Wencui, YANG Jianjun, GAO Haiyang, LI Zhenguo. Combustion and emissions characteristics of highly diluted gasoline mixture ignited by DME enabled micro-flame [J]. Journal of Automotive Safety and Energy, 2021, 12(4): 580-586. |
| [2] | YIN Aiyong, HUANG Zhaoming, WANG Li, SHEN Kai, CHEN Weiguo. Analysis of lean combustion and emission characteristics of Miller cycle gasoline engine [J]. Journal of Automotive Safety and Energy, 2021, 12(3): 402-409. |
| [3] | SUN Jian, GENG Lu, LAI Haipeng, GAO Dingwei, YU Shuhai. Study on ignition temperature conditions and influencing factors of lean burn spark assisted compression ignition [J]. Journal of Automotive Safety and Energy, 2021, 12(2): 232-242. |
| [4] | HAN Zhiyu, WU Zhenkuo, GAO Xiaojie . Development trend of internal combustion engines in the revolution of automotive powertrain [J]. Journal Of Automotive Safety And Energy, 2019, 10(2): 146-160. |
| [5] | SHEN Yuan, YANG Chen, DENG Xiaolong, et al. Development and optimization of NVH for a 3-cylinder turbocharged gasoline direct injection engine [J]. Journal Of Automotive Safety And Energy, 2018, 9(4): 359-369. |
| [6] | YANG Chen, YIN Jiandong, SHEN Yuan, et al. Development of a 3-cylinder 1.0-L turbocharged gasoline direct injection engine [J]. Journal Of Automotive Safety And Energy, 2018, 9(3): 333-338. |
| [7] | XU Zheng, GONG Weiguo, Scholten I, et al. Development of 1.5-L turbocharged GDI engine at SAIC motor [J]. Journal Of Automotive Safety And Energy, 2018, 9(3): 339-351. |
| [8] | ZHANG Shemin, DENG Limei, JIANG Nan, et al. Development of an inline 3-cylinder 1.0-L turbocharged direct injection engine [J]. Journal Of Automotive Safety And Energy, 2017, 08(03): 279-286. |
| [9] | WANG Yinhui, SHUAI Shijin, ZHANG Wenbin, MA Xiao, XU Hongming. Review of fuel properties impacting on primary particulate emissions and secondary particulate formation from gasoline direct injection engines [J]. Journal Of Automotive Safety And Energy, 2016, 07(04): 355-370. |
| [10] | WANG Zhi, LONG Yan, WANG Jianxin. Research progress of pre-ignition and super-knock in boost gasoline engine [J]. Journal of Automotive Safety and Energy, 2015, 6(01): 17-29. |
| [11] | SHUAI Shijin, ZHENG Rong, WANG Yinhui, FU Haichao, XU Hongming. Experimental study on the characteristics of particulate emissions from GDI engines [J]. Journal Of Automotive Safety And Energy, 2014, 5(03): 304-310. |
| [12] | LI Dinggen, YAN Suo, CONG Yaowei. Estimation and predictive control of gasoline engine torque based on Sigmoid-ARX algorithm [J]. Journal Of Automotive Safety And Energy, 2014, 5(01): 70-75. |
| [13] | WANG Jianxin, SONG Tao, LIU Hui, WANG Zhi. Lean dilution combustion (LDC) for improving fuel economy of gasoline direct injection engine at part-load [J]. Journal Of Automotive Safety And Energy, 2014, 5(01): 97-105. |
| [14] | Hongming XU. Present and Future of Premixed Compression Ignition Engines [J]. Journal Of Automotive Safety And Energy, 2012, 3(3): 185-199. |
| [15] | Yasuo MORIYOSHI, Tatsuya KUBOYAMA. Recent Progress in HCCI Combustion for a Practical Usage as a Gasoline Engine [J]. Journal Of Automotive Safety And Energy, 2012, 3(2): 105-115. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||