Articles | Open Access | https://doi.org/10.37547/ijasr-02-10-11

IMPROVING THE PERFORMANCE OF A PASSENGER CAR WITH A SPARK IGNITION ENGINE USING LIQUEFIED PETROLEUM GAS WITH THE ADDITION OF DEMETHYL ETHER

O.Z. Odilov Phd In Technical Sciences, Associate Professor, Fergana Polytechnic Institute, Fergana, Uzbekistan D.A. Mirkomilov Master's Student, Fergana Polytechnic Institute, Fergana, Uzbekistan

Abstract

The article presents the results of a computational and experimental study of a passenger car with a spark ignition engine running on liquefied petroleum gas (LPG) with dimethyl ether (DME) additives. Recommendations are given on the modernization of gas cylinders for refuelling LPG with DME additives, as well as studies of a passenger car running on composite gas fuels.

 

Keywords

Passenger, liquefied petroleum gas,

References

Льотко, В., Луканин, В. Н., & Хачиян, А. С. (2000). Применение альтернативных топлив в двигателях внутреннего сгорания.

Базаров Б.И., Калауов С.А., Васидов А.Х. (2014). Альтернативные моторные топлива. Ташкент. SHAMS ASA. 189 c.

Вагнер, В. А., & Гвоздев, А. М. (2006). Использование диметилового эфира в качестве добавки к дизельному топливу. Омский научный вестник, (5 (39)), 81-83.

ТУ 20.14.63 – 025- 05761695 – 2017. Эфир диметиловый жидкий. Технические условия.

Марков, В. А., Гайворонский, А. И., Грехов, Л. В., & Иващенко, Н. А. (2008). Работа дизелей на нетрадиционных топливах.

Базаров, Б. И., Калауов, С. А., Сидиков, Ф. Ш., & Усманов, И. И. (2016). Особенности использования диметилового эфира в качестве моторного топлива. Химия и химическая технология, 51(1), 62-64.

Ахматжанов, Р. Н., Калауов, С. А., & Базаров, Б. И. (2016). Системный подход к использованию композиционных моторных топлив на основе спиртов и эфиров. European science, (3 (13)), 35-38.

Feng, Y., Chen, T., Xie, H., Wang, X., & Zhao, H. (2020). Effects of injection timing of DME on Micro Flame Ignition (MFI) combustion in a gasoline engine. In Internal Combustion Engines and Powertrain Systems for Future Transport 2019 (pp. 24-42). CRC Press.

Flekiewicz, M., & Kubica, G. (2013). The effects of blending dimethyl ether with LPG on the engine operation and its efficiency. Combustion Engines, 52(3), 86-95.

Anggarani, R., Wibowo, C. S., & Sukaraharja, R. (2015). Performance and emission characteristics of dimethyl ether (DME) mixed liquefied gas for vehicle (LGV) as alternative fuel for spark ignition engine. Energy Procedia, 65, 274-281.

Абдурахмонов, А. Г., Одилов, О. З., & Сотволдиев, У. У. (2021). Альтернативные пути использования сжиженного нефтяного газа с добавкой деметилового эфира в качестве топлива легкового автомобиля с двигателем искрового зажигания. Academic research in educational sciences, 2(12), 393-400.

Salomov, U. R., Moydinov, D. A., & Odilov, O. Z. (2021). The Development of a Mathematical Model to Optimize the Concentration of the Components of the Forming Adhesive Composition. Development, 8(9).

Salomov, U., Yusupov, S., Odilov, O., & Moydinov, D. (2022). Theoretical Substantiation of the Advisability of Using Adhesives When Sealing the Core of Car Radiators and Diagnosing Radiators with a Thermal Load. International Journal of Engineering Trends and Technology, 70(1), 81-92.

Zokirzhonovich, O. O. (2021). Use of Low-Carbon Technologies on Vehicle Transport. International Journal of Innovative Analyses and Emerging Technology, 1(5), 15-17.

Dabi, M., & Saha, U. K. (2019). Application potential of vegetable oils as alternative to diesel fuels in compression ignition engines: A review. Journal of the Energy Institute, 92(6), 1710-1726.

Technical regulation of the Customs Union TR CU 013/2011 “On requirements for motor and aviation gasoline, diesel and marine fuel, jet fuel and fuel oil

Bazarov, B. I., Kalauov, S. A., & Vasidov, A. K. (2014). Alternative motor fuels. Monograph. Tashkent: SHAMS ASA.

Brown, C. (2013). Gas-to-Liquid–A Viable Alternative to Oil-Derived Transport Fuels?. Oxford Institute for Energy Studies.

Mikhailovsky A. A., Terentyeva N. A. (2015). Obtaining synthetic hydrocarbons from natural gas using GTL technology. Bulletin of the Technological University. 18(23), 31-36.

Kozin V.G., Solodova N.L., Bashkirtseva N.Yu., Abdullin A.I. (2009). Modern technologies for the production of motor fuel components. Kazan, 311 p.

Bazarov B.I., Sidikov F.Sh., Odilov O.Z. et al. (2019) Modern trends in the use of alternative motor fuels. Journal of Advanced Research in Technical Science. Vol. 2. p.186-188.

Folkson, R. (Ed.). (2014). Alternative fuels and advanced vehicle technologies for improved environmental performance: towards zero carbon transportation. Elsevier.

Bazarov, B. I., Otabaev, N. I., Odilov, O. Z., Meliev, H. O., & Axynov, J. A. (2020). Features of Using Liquefied Petroleum Gas with Addition of Dimethyl Ether as Fuel of Car with f Spark-Ignition Engine. International Journal of Advanced Research in Science, Engineering and Technology, 7(11), 15695-15698.

Imamovich, B. B., Nematjonovich, A. R., Khaydarali, F., Zokirjonovich, O. O., & Ibragimovich, O. N. (2021). Performance Indicators of a Passenger Car with a Spark Ignition Engine Functioning With Different Engine Fuels. Annals of the Romanian Society for Cell Biology, 6254-6262.

Worldwide Fuel Charter. Gasoline and diesel fuel. 2019. 105 p.

GOST 3 2 5 1 1 -2013 (EN 590:2009) EURO DIESEL FUEL Specifications

O'z DSt 3134:2011 Synthetic diesel fuel component. Specifications

GOST 3122-67 (ST SEV 2877-81) Diesel fuels. Method for determining the cetane number

GOST 27768-88 (ST SEV 5871-87) Diesel fuel. Determination of cetane index by calculation method

ISO 4264:2018 Petroleum products. Calculating the Cetane Index of Medium Distillate Fuels Using a Four-Variable Equation [In Russian: ISO 4264 Petroleum products – Calculation of cetane index of middle-distillate fuels by the four variable equation]

EN 590:2009 Automotive fuels - diesel - requirements and test methods (MOD)

Pustovalova L.M., Nikanorova I.E. Technique of laboratory work. -M.: Phoenix, 2004. 288 p.

Xusanjonov, A. S., & Otaboev, N. I. (2018). Improving Of Steerability Of Automobiles With Rotation Of X-Type Of His Rear Wheels Relatively Of Front Wheels. Scientific-technical journal, 22(2), 131-133.

Axunov, J. A. (2022). Analysis of young pedestrian speed. Academicia Globe: Inderscience Research, 3 (04), 193–195.

Imamovich, B. B., Zokirjonovich, O. O., Ibragimovich, O. N., & Rashidovich, F. P. (2022). Method For Determining The Cetan Numbers Of Synthetic Diesel Fuel. Journal of Positive School Psychology, 6(9), 3827-3833.

Oblayorovich, M. X., & Mukhamadbekovich, T. D. (2022). Analysis of the Impact of Hydraulic System Fluid Quality on the Efficient Operation of Universal-Type Tractors. Eurasian Research Bulletin, 6, 103-108.

Xujamqulov, S. U., Masodiqov, Q. X., & Abdunazarov, R. X. (2022, March). Prospects for the development of the automotive industry in uzbekistan. In E Conference Zone (pp. 98-100).

Fayziyev, P. R., Ikromov, I. A., Abduraximov, A. A., & Dehqonov, Q. M. (2022). Organization of technological processes for maintenance and repair of electric vehicles. International Journal of Advance Scientific Research, 2(03), 37-41.

Fayziyev, P. R., Ikromov, I. A., Abduraximov, A. A., & Dehqonov, Q. M. (2022). Timeline: History of the Electric Car, Trends and the Future Developments. Eurasian Research Bulletin, 6, 89-94.

Sotvoldiev, U., Abdubannopov, A., & Zhalilova, G. (2021). Theoretical foundations of the acceleration sliding control system. Scientific progress, 2(1), 1461-1466

Ismadiyorov, A. A., & Sotvoldiyev, O. U. (2021). Model of assessment of fuel consumption in car operation in city conditions. Academic research in educational sciences, 2(11), 1013-1019.

Qobulov, M. A. O., & Abdurakhimov, A. A. (2021). Analysis of acceleration slip regulation system used in modern cars. ACADEMICIA: An International Multidisciplinary Research Journal, 11(9), 526-531.

Tursunov, D. M. (2022). Technical Diagnostics of Cars to Fulfill Their Status and Basic Rules. Eurasian Journal of Engineering and Technology, 10, 121-123.

Qobulov, M. (2022). Improving the Management of the Number and Composition of Buses in the City of Fergana. Eurasian Journal of Engineering and Technology, 10, 115-120.

Fayzullayev, X. (2022). Vehicle Motion Model with Wheel Lock. Eurasian Journal of Engineering and Technology, 10, 68-73.

Nosirjonov, S. (2022). A Theoretical Approach to the Study of the Braking Process. Eurasian Journal of Engineering and Technology, 10, 74-78.

Sotvodiyev, O. T. (2022). A Regional Look at Cars in A Mixed Park. Eurasian Journal of Engineering and Technology, 10, 79-84.

Anvarjon, I. A. (2022). Research on polishing properties of gear oils and ways to improve them. Innovative Technologica: Methodical Research Journal, 3(09), 13-21.

Ibragimovich, O. N. (2022). Mathematical model of diesel internal combustion engine subsystem. Innovative Technologica: Methodical Research Journal, 3(09), 22-28.

Masodiqov, Q. X. (2022). The study of theoretical and practical aspects of the occurrence of internal stresses in polymeric and paint-and-lacquer materials and coatings based on them, which have a significant impact on their durability. Innovative Technologica: Methodical Research Journal, 3(09), 29-37.

IA, I. (2022). Adaptation of the vehicle supply system to work with compressed gas. Innovative Technologica: Methodical Research Journal, 3(09), 48-56.

Abdujalilovich, A. J. (2022). Analysis of road accidents involving children that occurred in fergana region. Innovative Technologica: Methodical Research Journal, 3(09), 57-62.

Abdurakhimov, A. A. (2022). The basics of determining the braking of vehicles in road traffic. Innovative Technologica: Methodical Research Journal, 3(09), 63-78.

Tursunov, D. M. (2022). Study of the stages of development of a gas-cylinder engine supply system. Innovative Technologica: Methodical Research Journal, 3(09), 79-84.

Abdujalilovich, A. J. (2022). Analysis of the speed of children of the 46th kindergarten on margilanskaya street. American Journal of Interdisciplinary Research and Development, 5, 9-11.

Axunov, J. A. (2021). Piyodani urib yuborish bilan bog’liq ythlarni tadqiq qilishni takomillashtirish. Academic research in educational sciences, 2(11), 1020-1026.

Axunov, J. A. (2022). Ta’lim muassasalari joylashgan ko ‘chalarda bolalarning harakat miqdorini o ‘zgarishi. Academic research in educational sciences, 3(4), 525-529.

Abdukhalilovich, I. I., & Abdujalilovich, J. A. (2020). Description Of Vehicle Operating Conditions And Their Impact On The Technical Condition Of Vehicles. The American Journal of Applied sciences, 2(10), 37-40.

Article Statistics

Downloads

Download data is not yet available.

Copyright License

Download Citations

How to Cite

IMPROVING THE PERFORMANCE OF A PASSENGER CAR WITH A SPARK IGNITION ENGINE USING LIQUEFIED PETROLEUM GAS WITH THE ADDITION OF DEMETHYL ETHER. (2022). International Journal of Advance Scientific Research, 2(10), 65-74. https://doi.org/10.37547/ijasr-02-10-11