Open Access
Issue |
E3S Web Conf.
Volume 548, 2024
X International Conference on Advanced Agritechnologies, Environmental Engineering and Sustainable Development (AGRITECH-X 2024)
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Article Number | 06003 | |
Number of page(s) | 11 | |
Section | Agricultural Mechanization, Civil Engineering and Energetics | |
DOI | https://doi.org/10.1051/e3sconf/202454806003 | |
Published online | 12 July 2024 |
- C. Pastorello, P. Dilara, G. Martini, Transportation Research Part D: Transport and Environment 16 (2), 121–128 (2011) [CrossRef] [Google Scholar]
- F. Amrouche, A. Benzaoui, F. Harouadi, B. Mahmah, M. Belhamel, Procedia Engineering 33 102–110 (2012) [CrossRef] [Google Scholar]
- M. Yarime, Journal of Cleaner Production 17 (14), 1281–1288 (2009) [CrossRef] [Google Scholar]
- F.I. Abramchuk, A.N. Kabanov, A.P. Kuzmenko, M.S. Lipinsky, Automobile transport 28 37–42 (2011) [Google Scholar]
- R. Amorim, R. Valle, J. Baeta, J. Barros, et al., The influence of different compression ratios on the performance of an CNG-fuelled flex internal combustion engine, SAE Technical Paper 2005-01-4141 (2005) [Google Scholar]
- A.H. Voinov, Combustion in high-speed piston engines (M., Mashinostroenie, 1977) [Google Scholar]
- K.I. Genkin, Gas engines (M., Mashinostroenie, 1977) [Google Scholar]
- P.V. Puzinauskas, Examination of methods used to characterize engine knock SAE Technical Paper 920808 (1992) [Google Scholar]
- V. Mittal, B.M. Revier, J.B. Heywood, Phenomena that determine knock onset in sparkignition engines, SAE Technical Paper 2007-01-0007 (2007) [Google Scholar]
- J. McKenzie, W.K. Cheng, The anatomy of knock. SAE Technical Paper 2016-01-0704 (2016) [Google Scholar]
- B.A. Sharoglazov, Internal combustion engines: theory, modeling and calculation of processes (Chelyabinsk, SUSU Publishing Center, 2006) [Google Scholar]
- Zhi Wang, Hui Liu, Rolf D. Reitz, Progress in Energy and Combustion Science 61 78–112 (2017) [CrossRef] [Google Scholar]
- S. Szwaja, Science and technology 4 339–348 (2020) [Google Scholar]
- D.S. Kolesov, Detonation in the cylinders of gas piston engines-causes, consequences and methods of prevention, Turbines and Diesels 2020 22–23 (2020) [Google Scholar]
- G. Brecq, A. Ramesh, M. Tazerout, O. Le Corre, An Experimental Study of Knock in a Natural Gas Fueled Spark Ignition Engine. SAE Technical Paper 2001-01-3562 (2001) [Google Scholar]
- I.R. Alaberdin, A.V. Alekseev, A.G. Sadriev, D.M. Shamsutdinov, M.Kh. Nizamutdinov, O.V. Ivanova, Transport on alternative fuels 5 (95), 45–54 (2023) [Google Scholar]
- V.A. Luksho, A comprehensive method for increasing the energy efficiency of gas engines with a high compression ratio and shortened intake and exhaust strokes (Moscow, 2015) [Google Scholar]
- H. Kusakabe, T. Okauchi, M. Takigawa, A cylinder pressure sensor for internal combustion engine. SAE Technical Paper 920701 (1992) [Google Scholar]
- E.Yu. Zamaletdinova, A.I. Egorychev, Bulletin of the Kazan Technological University 17 (8), 124–127 (2014) [Google Scholar]
- G. Vigleb, Sensors. Device and application (St. Petersburg, publishing house of St. Petersburg State Technical University, 1999) [Google Scholar]
- A.M. Levterov, A.N. Avramenko, V.N. Bgantsev, Bulletin of the Kharkov National Automobile and Highway University 72 35–40 (2016) [Google Scholar]
- K. Burgdorf, I. Denbratt, Comparison of cylinder pressure based knock detection methods. SAE Technical Paper 972932 (1997) [Google Scholar]
- Y. Shimasaki, M. Kobayashi, et al., Study on engine management system using incylinder pressure sensor integrated with spark plug. SAE Technical Paper2004-01-0519 (2004) [Google Scholar]
- R. Teichmann, A. Wimmer, C. Schwarz, E. Winklhofer, Combustion diagnostics. Combustion engines development (Berlin, Heidelberg, Springer, 2012) [Google Scholar]
- C. Guardiola, B. Pla, P. Bares, A. Barbier, Applied Energy, 228 1272–1279 (2018). [CrossRef] [Google Scholar]
- Characteristics of the DDTs-200 sensor URL: https://forum.madiauto.ru/index.php?topic=30527.0 [Google Scholar]
- Application of sensors developed at MADI, combined with spark plugs for indicating internal combustion engines. https://pandia.ru/text/80/281/45665.php [Google Scholar]
- A. Bertola, R. Dolt, J. Höwing, The use of spark plug pressure transducers for engine indication measurements-possibilities and limits. SAE Technical Paper 2015-26-0041 (2015) [Google Scholar]
- A.V. Alexandrov, I.A. Dolgov, Piezoelectric sensor for measuring rapidly varying pressure of gas or liquid: 2016145578 (2018) [Google Scholar]
- J.D. Powell, ASME J. of Dynamic Systems, Measurement, and Control 115 343–350 (1993) [CrossRef] [Google Scholar]
- Measuring Spark Plug with Integrated Cylinder Pressure Sensor. https://kistler.com/mediaaccess/000-697e-08.11.pdf [Google Scholar]
- Overview of Fiber Optic Sensors. https://bluerr.com/papers/Overview_of_FOS2.pdf [Google Scholar]
- A.N. Sokolov, V.A. Yaceev, IGHTWAVE Russian Edition 4 42–44 (2006) [Google Scholar]
- Pressure measuring spark plug and sensor. https://optrand.com/fliers/psiplug/20060201.pdf [Google Scholar]
- A. Yu. Budko, A brief overview of modern combustion pressure sensors for the fuel-airmixture. https://forum.cxem.net/applications/core/interface/file/attachment.php ?id=253742 [Google Scholar]
- R. Van Basshuysen, F. Schäfer, Internal combustion engine handbook-basics, components, systems and perspectives (Warrendale: SAE International, 2016) [Google Scholar]
- M. Malenshek, D.B. Olsen, Fuel 88 650–656 (2009) [CrossRef] [Google Scholar]
- E.B. Khalil, G.A. Karim, ASME Journal of Engineering for Gas Turbines and Power, 124, (2002) [Google Scholar]
- F. Millo, C.V. Ferraro, Knock in SI engines: a comparison between different techniques for detection and control. SAE Technical Paper 982477 (1998) [Google Scholar]
- Planar Wide Band Lambda Sensor. Technical Customer Information. 258 E00 015e (2005) [Google Scholar]
- S.M. Dues, J.M. Adams, G.A. Shinkle, Combustion Knock Sensing: Sensor Selection and Application Issues. SAE Technical Paper Series 10.4271/900488 (1990) [Google Scholar]
- T. Dahl, Knock Sensor Failure Behavior on Wärtsilä Gas Engines (2015) [Google Scholar]
- A.V. Bueno, J.A. Velásquez, L.F. Milanez, Internal combustion engine indicating measurements. In: Applied measurement systems (London, InTech, 2012) [Google Scholar]
- B.A. Kaki, D.M. Shamsutdinov, Study of the combustion process in KAMAZ 820 engines using a cylinder pressure sensor. Materials of the 74th scientific and technical conference of students, graduate students and young scientists of USNTU (Ufa, 2023) [Google Scholar]
- A.V. Bueno, J.A. Velásquez, L.F. Milanez, Applied Thermal Engineering 29 (8-9), 1657–1675 (2009) [CrossRef] [Google Scholar]
- P.P. Turchin, et al., Journal of SFU. Mathematics and physics 1, (2020) [Google Scholar]
- E-502 Multifunctional ADC/DAC Module With USB & Interfaces Ethernet https://www.lcard.ru/products/external/e-502 [Google Scholar]
- R.K. Maurya, Reciprocating Engine Combustion Diagnostics:In-Cylinder Pressure Measurement and Analysis (Springer, 2019) [CrossRef] [Google Scholar]
- M. Schwanderlapp, K. Habermann, K. Yapici, Variable Compression Ratio – A Design Solution for Fuel Economy Concepts, SAE Paper, 2002-01-1103 (2002) [Google Scholar]
- G.A. Karim, S.R. Klat, Journal of the Institute of Fuel 39.302 109 (1966) [Google Scholar]
- I.V. Krasnov, Transport on alternative fuels 2 (92), 54–61 (2023) [Google Scholar]
- L.A. Gnedova, K.A. Gritsenko, et al., Alternative Fuel Transport 5 (23), 53–56 (2011) [Google Scholar]
- S. Szwaja, J.D. Naber, Powertrain and Transport 14 (2), 457–464 (2007) [Google Scholar]
- R.C. Iyer, M. Vaggar, T.R. Seetharam, S.A. Channiwala, Investigations on the influence of ignition voltage, higher compression ratio and piston crown geometry on the performance of compressed natural gas engines. SAE Technical Paper 2008-01-1762 (2008) [Google Scholar]
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