SIP common gasoline surrogate compositions and properties
The Gasoline Combustion Team under the Innovative Combustion Technology (ICT) of Cross-ministerial Strategic Innovation Promotion Program(SIP) has proposed and used gasoline surrogate fuels with the following features for the research.
1. Capable of emulating the basic combustion properties of gasoline on the market
2. Available in future, stable supply and easy handling
3. Capable of developing reliable combustion kinetic mechanisms
A proposed five-component surrogate fuels have been verified to almost emulate the basic combustion properties of fuels on the market, such as an ignition delay time and a laminar burning velocity in cooperation with other researchers joined in the project, and the detailed and reduced kinetic mechanisms have become available.
Compositions and properties are disclosed on this website in order to effectively utilize and share outcomes of the research among academia and industry.
Cite these surrogate fuels by referring to the following publication.
[1] Akira Miyoshi and Yasuyuki Sakai, Construction of a Detailed Kinetic Model for Gasoline Surrogate Mixtures, Transactions of Society of Automotive Engineers of Japan, 48 (5), 1021–1026 (2017) #20174744. [in Japanese]
[2] Akira Miyoshi and Yasuyuki Sakai, Construction of a Detailed Kinetic Model for Gasoline Surrogate Mixtures, Proceedings of the 2017 JSAE Annual Congress (Spring), Yokohama, Japan, May 24–26 (2017). [in Japanese]
June 30, 2017
SIP-ICT Gasoline Combustion Team
* This research was conducted under the “Innovative Combustion Technology (ICT)” of the Cross-ministerial Strategic Innovation Promotion Program (SIP) by Council for Science, Technology and Innovation (CSTI), (Funding agency: JST).
* Compositions and properties of surrogate fuels were determined in cooperation with JXTG Nippon Oil & Energy Corporation.
* This research does not intend a complete emulation for gasoline properties comprised over 100 ingredients including distillation characteristics or a PM generation trend .
- SIP common gasoline surrogate compositions and properties
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