On the Intelligent Optimization of the Crevice Structure in a Rapid Compression Machine
Author:
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11630-024-1883-6.pdf
Reference35 articles.
1. Wu Y., Yang M., Tang C., et al., Promoting “adiabatic core” approximation in a rapid compression machine by an optimized creviced piston design. Fuel, 2019, 251: 328–340.
2. Goldsborough S.S., Hochgreb S., Vanhove G., et al., Advances in rapid compression machine studies of low-and intermediate-temperature autoignition phenomena. Progress in Energy and Combustion Science, 2017, 63: 1–78.
3. Liu Y., Tang C., Zhan C., et al., Low temperature auto-ignition characteristics of methylcyclohexane/ethanol blend fuels: Ignition delay time measurement and kinetic analysis. Energy, 2019, 177: 465–475.
4. Piehl J.A., Samimi-Abianeh O., Measuring the adiabatic ignition delay of n-pentane mixture using rapid compression machine. Journal of Thermal Science, 2022, 31: 552–560.
5. Goyal T., Trivedi D., Abianeh O.S., Autoignition and flame spectroscopy of propane mixture in a rapid compression machine. Fuel, 2018, 233: 56–57.
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