Shiwangi Mishra,
Vivek Gedam,
- Research Scholar, Department of Mechanical Engineering, Eklavya University Damoh, Madhya Pradesh, India
- Associate Professor, Department of Mechanical Engineering, Eklavya University Damoh, Madhya Pradesh, India
Abstract
The increasing demand for sustainable energy has prompted much research into environment-friendly substitutes for traditional fossil fuels. In this study, the thermal performance and emission characteristics of Kirloskar Variable Compression Ratio (VCR) diesel engines evaluated with varying load conditions using biodiesel-sourced oil blended with soybean oil are discussed. B0 (pure diesel) to B100 (pure biodiesel) blends were considered for the study to assess their effects on parameters, like brake thermal efficiency (BTE), brake specific fuel consumption (BSFC), carbon dioxide (CO₂), sulfur dioxide (SO₂), nitrogen oxides (NOₓ), and particulate matter (PM) emissions. The experimental findings indicated that biodiesel blends contributed to enhanced combustion temperatures and flow of exhaust gases while still providing an acceptable efficiency level under load conditions. Significantly reduced CO₂ and PM emissions were also observed for B20 with respect to pure diesel, indicating its ability to act as a cleaner fuel alternative. Although small differentials in efficiency showed up between blends, B20 gave a fair balance between performance and environmental merits. The study closes with the contention that low concentrations, such as B20, can easily be used in existing diesel engines with no major modifications for betterment of the environment while at the same time allowing the engine to perform at its best longevity with reliability. This will increase the uptake of biodiesel as a possible alternative. Methods of analysing engine fuel, performance metrics, and efforts concerning pilot and biodiesel usage, use of different blends, test implementations, and emissions observed will be covered. In addition, the potential of biodiesel for adoption in each area will be reviewed based on input from other countries. Finally, in another section of the final report, formulation criteria will be reviewed at the biodiesel plant.
Keywords: Biodiesel, Variable Compression Ratio (VCR), brake thermal efficiency (BTE), brake specific fuel consumption (BSFC), Soybean oil.
[This article belongs to International Journal of Electrical and Communication Engineering Technology ]
Shiwangi Mishra, Vivek Gedam. Thermal Analysis of Kirloskar VCR Engines Using Blended Biodiesels under Varying Loads. International Journal of Electrical and Communication Engineering Technology. 2025; 03(01):19-34.
Shiwangi Mishra, Vivek Gedam. Thermal Analysis of Kirloskar VCR Engines Using Blended Biodiesels under Varying Loads. International Journal of Electrical and Communication Engineering Technology. 2025; 03(01):19-34. Available from: https://journals.stmjournals.com/ijecet/article=2025/view=202762
References
- Suhara, A., Karyadi, Herawan, S. G., Tirta, A., Idris, M., Roslan, M. F., … & Veza, I. (2024). Biodiesel sustainability: review of progress and challenges of biodiesel as sustainable biofuel. Clean Technologies, 6(3), 886-906. https://doi.org/10.3390/cleantechnol6030045
- Soudagar, M. E. M., Shelare, S., Marghade, D., Belkhode, P., Nur-E-Alam, M., Kiong, T. S., … & Fattah, I. M. R. (2024). Optimizing IC engine efficiency: A comprehensive review on biodiesel, nanofluid, and the role of artificial intelligence and machine learning. Energy Conversion and Management, 307, 118337. https://doi.org/10.1016/j.enconman.2024.118337
- Gadore, V., Mishra, S. R., & Ahmaruzzaman, M. (2024). Advances in photocatalytic biodiesel production: Preparation methods, modifications and mechanisms. Fuel, 362, 130749. https://doi.org/10.1016/j.fuel.2023.130749
- Wang, Y., Sedghi, R., Shahbeik, H., Hosseinzadeh-Bandbafha, H., Pan, J., Tabatabaei, M., & Aghbashlo, M. (2024). A comprehensive review of exergy analysis in biodiesel-powered engines for sustainable power generation. Sustainable Energy Technologies and Assessments, 68, 103869. https://doi.org/10.1016/j.seta.2024.103869
- Xie, Dongming. (2017). Integrating Cellular and Bioprocess Engineering in the Non-Conventional Yeast Yarrowia lipolytica for Biodiesel Production: A Review. Frontiers in Bioengineering and Biotechnology. 5. 10.3389/fbioe.2017.00065.
- Konda, Y. R., Ponnaganti, V. K., Reddy, P. V. S., Singh, R. R., Mercorelli, P., Gundabattini, E., & Solomon, D. G. (2024). Thermal analysis and cooling strategies of high-efficiency three-phase squirrel-cage induction motors—A review. Computation, 12(1), 6. https://doi.org/10.3390/computation12010006
- Dahham, R. Y., Wei, H., & Pan, J. (2022). Improving thermal efficiency of internal combustion engines: recent progress and remaining challenges. Energies, 15(17), 6222. https://doi.org/10.3390/en15176222
- Madhavan, S., PB, R. D., Gundabattini, E., & Mystkowski, A. (2022). Thermal analysis and heat management strategies for an induction motor, a review. Energies, 15(21), 8127. https://doi.org/10.3390/en15218127
- Pillai, S. K., Rajamanickam, U., & Khurana, S. (2023). Impact of diethyl ether on performance and emission characteristics of a VCR diesel engine fueled by dual biodiesel. Energies, 16(13), 4863. https://doi.org/10.3390/en16134863
- Chandran, R., & Gounder, R. I. (2025). Assessing the performance and characteristics of biomass oil by fast pyrolysis of coconut outer shell and its blends. Biomass Conversion and Biorefinery, 1-12. https://doi.org/10.1007/s13399-025-06662-x
- Shrivastava, K., Thipse, S. S., & Patil, I. D. (2021). Optimization of diesel engine performance and emission parameters of Karanja biodiesel-ethanol-diesel blends at optimized operating conditions. Fuel, 293, 120451. https://doi.org/10.1016/j.fuel.2021.120451
- Malik, M. A. I., Zeeshan, S., Khubaib, M., Ikram, A., Hussain, F., Yassin, H., & Qazi, A. (2024). A review of major trends, opportunities, and technical challenges in biodiesel production from waste sources. Energy Conversion and Management: X, 100675. https://doi.org/10.1016/j.ecmx.2024.100675
- Khujamberdiev, R., & Cho, H. M. (2025). Artificial Intelligence in Automotives: ANNs’ Impact on Biodiesel Engine Performance and Emissions. Energies, 18(2), 438. https://doi.org/10.3390/en18020438
- Veza, I., Spraggon, M., Fattah, I. R., & Idris, M. (2023). Response surface methodology (RSM) for optimizing engine performance and emissions fueled with biofuel: Review of RSM for sustainability energy transition. Results in Engineering, 18, 101213. https://doi.org/10.1016/j.rineng.2023.101213
- Loo, D. L., Teoh, Y. H., How, H. G., Teh, J. S., Andrei, L. C., Starčević, S., & Sher, F. (2021). Applications characteristics of different Biodiesel blends in Modern vehicles engines: a review. Sustainability, 13(17), 9677. https://doi.org/10.3390/su13179677
- Ellappan, S., & Rajendran, S. (2021). A comparative review of performance and emission characteristics of diesel engine using eucalyptus-biodiesel blend. Fuel, 284, 118925. https://doi.org/10.1016/j.fuel.2020.118925
- Sayyed, S., Das, R. K., Kulkarni, K., Alam, T., & Eldin, S. M. (2023). Influence of additive mixed ethanol-biodiesel blends on diesel engine characteristics. V. https://doi.org/10.1016/j.aej.2023.03.091
- Atgur, V., Manavendra, G., Banapurmath, N. R., Rao, B. N., Rajhi, A. A., Khan, T. Y., … & Venkatesh, R. (2022). Essence of thermal analysis to assess biodiesel combustion performance. Energies, 15(18), 6622. https://doi.org/10.3390/en15186622
- Yadav, C., & Sahoo, R. R. (2022). Thermal analysis comparison of nano-additive PCM-based engine waste heat recovery thermal storage systems: an experimental study. Journal of thermal analysis and calorimetry, 147(3), 2785-2802. https://doi.org/10.1007/s10973-021-10611-x
- Ağbulut, Ü., Elibol, E., Demirci, T., Sarıdemir, S., Gürel, A. E., Rajak, U., … & Verma, T. N. (2022). Synthesis of graphene oxide nanoparticles and the influences of their usage as fuel additives on CI engine behaviors. Volume 244, Part A, 1 April 2022, 122603. https://doi.org/10.1016/j.energy.2021.122603
- Sathish, T., Ağbulut, Ü., Muthukumar, K., Saravanan, R., Alwetaishi, M., Shaik, S., & Saleel, C. A. (2023). Pore size variation of nano-porous material fixer on the engine bowl and its combined effects on hybrid nano-fuelled CI engine characteristics. Volume 345, 1 August 2023, 128149. https://doi.org/10.1016/j.fuel.2023.128149
| Volume | 03 |
| Issue | 01 |
| Received | 25/02/2025 |
| Accepted | 28/02/2025 |
| Published | 05/03/2025 |
| Publication Time | 8 Days |
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