Effect of Natural and Synthesized Oil Blends with Diesel by Volume on Lubrication and Performance of Internal Combustion Engine
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Thapathali Campus, Institute of Engineering, Tribhuvan University
DOI
10.3126/jiee.v3i1.34331
Abstract
Use of ultra-low sulfur diesel leads to improve emission but it has negative impact on lubrication. Poor lubrication leads to damage the cylinder parts and piston rings. For proper lubrication in ultra-low sulfur diesel, anti-wear agent, corrosion & Rust inhibitor, metal deactivator, Anti-oxidant, Pour point depressant, seal swell agent, viscosity improver and other are used. Viscosity improver such as polymers and copolymers of methacrylates, butadiene olefins and alkylated styrenes reduce the rate of viscosity change with temperature, metal deactivator are organic complexes containing nitrogen or sulphur, amines, sulphides and phosphites reduce catalytic effect on metals on oxidation rate, anti-wear agent such as Zinc dithiophosphates, organic phosphates and acid phosphates reduces friction and wear and prevent scoring and seizure. In this paper comparison of 5% blend of commercially available synthesized lubricating oil mixed with pure diesel by volume and 5% blend of transesterified Jatropha with pure diesel by volume is investigated. It is found that for the same brake power, indicated power provided by 5% blend of transesterified Jatropha is lower than 5% blend of lubricating oil. The friction loss for 5% blend of transesterified Jatropha is lower than 5% blend of lubricating oil. Throughout the load specific fuel consumption of 5% blend of transesterified Jatropha is lower than 5% blend of lubricating oil except at low load (i.e. before 1.5kg). Other performance parameters such as indicated thermal efficiency, brake thermal efficiency, volumetric efficiency and mechanical efficiency also support the fact that 5% blend of transesterified Jatropha shows a better performance characteristics than 5% blend of lubricating oil.
Description
Journal: Journal of Innovations in Engineering Education (JIEE), ISSN 2594-343X (print), 2773-823X (online)
Volume/Issue: Vol. 3, Issue 1 (2020), pages 107-114
Article type: Research Article
Published: 2020-03-31
DOI: https://doi.org/10.3126/jiee.v3i1.34331
Authors and affiliations:
- Laxman Palikhel (Thapathali Campus, Institute of Engineering, Tribhuvan University, Kathmandu, Nepal)
- Rupesh Lal Karn (Thapathali Campus, Institute of Engineering, Tribhuvan University, Kathmandu, Nepal)
- Suman Aryal (Department of Automobile and Mechanical Engineering, Thapathali Campus, Institute of Engineering, Tribhuvan University, Thapathali, Kathmandu, Nepal)
- Barsha Neupane (Department of Automobile and Mechanical Engineering, Thapathali Campus, Institute of Engineering, Tribhuvan University, Thapathali, Kathmandu, Nepal)
TCIOE department(s): Department of Automobile and Mechanical Engineering
Publisher: Thapathali Campus, Institute of Engineering, Tribhuvan University
License: Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), https://creativecommons.org/licenses/by-nc-nd/4.0/
Journal website: https://journal.tcioe.edu.np/articles/8b6532b7-37e0-432c-bc20-fa1ab3a943e5
NepJOL: https://www.nepjol.info/index.php/jiee/article/view/34331
Keywords
Frictional Power , Low Sulfur Diesel , Lubricity , Biodiesel , Ultra-Low Sulfur Diesel , JIEE , Journal of Innovations in Engineering Education , JIEE 2020 , JIEE Volume 3 , Research Article , Thapathali Campus , TCIOE , Institute of Engineering , IOE , Tribhuvan University , Nepal , engineering research Nepal , peer-reviewed journal article , open access , Department of Automobile and Mechanical Engineering
Citation
Palikhel, L., Karn, R. L., Aryal, S., & Neupane, B. (2020). Effect of Natural and Synthesized Oil Blends with Diesel by Volume on Lubrication and Performance of Internal Combustion Engine. Journal of Innovations in Engineering Education, 3(1), 107-114. https://doi.org/10.3126/jiee.v3i1.34331
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Except where otherwise noted, this item's license is described as Copyright (c) 2020 JIEE and the authors. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0).


