Research Article
BibTex RIS Cite
Year 2023, Volume: 7 Issue: 3, 223 - 233, 30.09.2023
https://doi.org/10.30939/ijastech..1326036

Abstract

References

  • [1] Usman M, Nomanbhay S, Ong MY, Saleem MW, Irshad M, Hassan ZU, et al. Response surface methodology routed optimization of performance of hydroxy gas enriched diesel fuel in compression ignition engines. Processes. 2021;9(8):1355.
  • [2] Uyumaz A, Solmaz H, Yılmaz E, Yamık H, Polat S. Experimental examination of the effects of military aviation fuel JP-8 and biodiesel fuel blends on the engine performance, exhaust emissions and combustion in a direct injection engine. Fuel Processing Technology. 2014;128:158-65.
  • [3] Solmaz H. A comparative study on the usage of fusel oil and reference fuels in an HCCI engine at different compression ratios. Fuel. 2020;273,117775.
  • [4] Jose DM, Raj RE, Prasad BD, Kennedy ZR, Ibrahim AM. A multi-variant approach to optimize process parameters for biodiesel extraction from rubber seed oil. Applied Energy. 2011;88(6):2056-63.
  • [5] Prakash S, Prabhahar M, Saravana Kumar M. Experimental analysis of diesel engine behaviours using biodiesel with different exhaust gas recirculation rates. International Journal of Ambient Energy. 2022;43(1):1508-17.
  • [6] Tamilselvan P, Sassykova L, Prabhahar M, Bhaskar K, Kannayiram G, Subramanian S, et al. Influence of saturated fatty acid material composition in biodiesel on its performance in internal combustion engines. Materials Today: Proceedings. 2020;33:1181-86.
  • [7] Prakash S, Prabhahar M, Niyas OP, Faris S, Vyshnav C. Thermal barrier coating on IC engine piston to improve efficiency using dual fuel. Materials Today: Proceedings. 2020;33:919-24.
  • [8] Kumar S. Temperature distribution measurement on combustion chamber surface of diesel engine-experimental method. International Journal of Automotive Science and Technology. 2017;1(3):8-11.
  • [9] Kumar S, Kumar A, Sharama AR, Kumar A. Heat transfer correlations on combustion chamber surface of diesel engine-experimental work. International Journal of Automotive Science and Technology. 2018;2(3):28-35.
  • [10] Prabhahar M, Prakash S, George I, Amith KK. Optimization of performance and emission characteristics of bio diesel fuelled VCR engine using Taguchi approach. Materials Today: Proceedings. 2020;33:859-67.
  • [11] Aydın S. Comprehensive analysis of combustion, performance and emissions of power generator diesel engine fueled with different source of biodiesel blends. Energy. 2020;205,118074.
  • [12] Krishnamoorthy V, Dhanasekaran R, Rana D, Saravanan S, Kumar BR. A comparative assessment of ternary blends of three bio-alcohols with waste cooking oil and diesel for optimum emissions and performance in a CI engine using response surface methodology. Energy Conversion and Management. 2018;156:337-57.
  • [13] Mofijur M, Masjuki HH, Kalam MA, Atabani AE. Evaluation of biodiesel blending, engine performance and emissions characteristics of Jatropha curcas methyl ester: Malaysian perspective. Energy. 2013;55:879-87.
  • [14] Yusri IM, Majeed AA, Mamat R, Ghazali MF, Awad OI, Azmi WH. A review on the application of response surface method and artificial neural network in engine performance and exhaust emissions characteristics in alternative fuel. Renewable and Sustainable Energy Reviews. 2018;90:665-86.
  • [15] Kumaran P, Natarajan S. Effect of thermal barrier coating by nanoparticle on IC engine for various biofuels - Review. IOP Conf Ser: Mater Sci Eng. 2020;993(1):012014.
  • [16] Diacon A, Călinescu I, Vinatoru M, Chipurici P, Vlaicu A, Boscornea AC, et al. Fatty acid ethyl esters (FAEE): A new, green and renewable solvent for the extraction of carotenoids from tomato waste products. Molecules. 2021;26(14),4388.
  • [17] Kumaran P, Natarajan S, Kumar AR, Jayaraj TV. Investigation of emission control on VCR diesel engine with additive and turbo-charger using algae biodiesel. AIP Conf Proc. 2023;2523(1).
  • [18] Tziourtzioumis D, Demetriades L, Zogou O, Stamatelos AM. Experimental investigation of the effect of a B70 biodiesel blend on a common-rail passenger car diesel engine. Proc Inst Mech Eng Part D J Automob Eng. 2009;223(5):685-701.
  • [19] Khalife E, Tabatabaei M, Demirbas A, Aghbashlo M. Impacts of additives on performance and emission characteristics of diesel engines during steady state operation. Progress in energy and Combustion Science. 2017;59:32-78.
  • [20] Sekhar SC, Karuppasamy K, Vedaraman N, Kabeel AE, Sathyamurthy R, Elkelawy M, et al. Biodiesel production process optimization from Pithecellobium dulce seed oil: Performance, combustion, and emission analysis on compression ignition engine fuelled with diesel/biodiesel blends. Energy Conversion and Management. 2018;161:141-54.
  • [21] Kumar S. Piston crown profile modifications for various combustion mode strategies of modified GDI engine towards NOx and PM reduction. International Journal of Automotive Science and Technology. 2020;4(4):289-94.
  • [22] Kumaran P, Natarajan S, Maheshwaran M, Rizal K, Rohith BC. Investigation on performance and emission characteristics of VCR diesel engine with different nozzles using blends of tomato seed oil. AIP Conf Proc. 2023;2523(1)

Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology

Year 2023, Volume: 7 Issue: 3, 223 - 233, 30.09.2023
https://doi.org/10.30939/ijastech..1326036

Abstract

The impact of load, Tomato Methyl Ester (TME), and Exhaust Gas Recirculation (EGR) enriched diesel on engine performance and exhaust gas emissions was examined in this study using the Response Surface Methodology (RSM) optimization technique. TME blend biodiesel (20, 40, and 60%) and EGR (10, 20 and 30%) were selected to maximize BTE and minimize BSFC, NOx, CO, smoke, and HC. The engine was operated using the RSM technique by load (0–100%). The results showed that the response variables were significantly influenced by load, TME and EGR concentration of engine. The results of the constructed quadratic models' analysis of variance (ANOVA) suggested that each model was an appropriate fit. Additionally, an optimal was found by optimizing the user-defined historical design of an experiment. The responses corresponding to optimal study factors were load 100%, TME Blend 20 and EGR 10% gives maximum BTE of 32.5%. The fuel consumption 0.2 kg/kW.h is reduced when load 50%, TME Blend 60 and EGR 10%. Smoke and NOx emissions were decreased by 15.09% and 49.04%, while CO and HC emissions were increased by 27.54% and 21.76%

References

  • [1] Usman M, Nomanbhay S, Ong MY, Saleem MW, Irshad M, Hassan ZU, et al. Response surface methodology routed optimization of performance of hydroxy gas enriched diesel fuel in compression ignition engines. Processes. 2021;9(8):1355.
  • [2] Uyumaz A, Solmaz H, Yılmaz E, Yamık H, Polat S. Experimental examination of the effects of military aviation fuel JP-8 and biodiesel fuel blends on the engine performance, exhaust emissions and combustion in a direct injection engine. Fuel Processing Technology. 2014;128:158-65.
  • [3] Solmaz H. A comparative study on the usage of fusel oil and reference fuels in an HCCI engine at different compression ratios. Fuel. 2020;273,117775.
  • [4] Jose DM, Raj RE, Prasad BD, Kennedy ZR, Ibrahim AM. A multi-variant approach to optimize process parameters for biodiesel extraction from rubber seed oil. Applied Energy. 2011;88(6):2056-63.
  • [5] Prakash S, Prabhahar M, Saravana Kumar M. Experimental analysis of diesel engine behaviours using biodiesel with different exhaust gas recirculation rates. International Journal of Ambient Energy. 2022;43(1):1508-17.
  • [6] Tamilselvan P, Sassykova L, Prabhahar M, Bhaskar K, Kannayiram G, Subramanian S, et al. Influence of saturated fatty acid material composition in biodiesel on its performance in internal combustion engines. Materials Today: Proceedings. 2020;33:1181-86.
  • [7] Prakash S, Prabhahar M, Niyas OP, Faris S, Vyshnav C. Thermal barrier coating on IC engine piston to improve efficiency using dual fuel. Materials Today: Proceedings. 2020;33:919-24.
  • [8] Kumar S. Temperature distribution measurement on combustion chamber surface of diesel engine-experimental method. International Journal of Automotive Science and Technology. 2017;1(3):8-11.
  • [9] Kumar S, Kumar A, Sharama AR, Kumar A. Heat transfer correlations on combustion chamber surface of diesel engine-experimental work. International Journal of Automotive Science and Technology. 2018;2(3):28-35.
  • [10] Prabhahar M, Prakash S, George I, Amith KK. Optimization of performance and emission characteristics of bio diesel fuelled VCR engine using Taguchi approach. Materials Today: Proceedings. 2020;33:859-67.
  • [11] Aydın S. Comprehensive analysis of combustion, performance and emissions of power generator diesel engine fueled with different source of biodiesel blends. Energy. 2020;205,118074.
  • [12] Krishnamoorthy V, Dhanasekaran R, Rana D, Saravanan S, Kumar BR. A comparative assessment of ternary blends of three bio-alcohols with waste cooking oil and diesel for optimum emissions and performance in a CI engine using response surface methodology. Energy Conversion and Management. 2018;156:337-57.
  • [13] Mofijur M, Masjuki HH, Kalam MA, Atabani AE. Evaluation of biodiesel blending, engine performance and emissions characteristics of Jatropha curcas methyl ester: Malaysian perspective. Energy. 2013;55:879-87.
  • [14] Yusri IM, Majeed AA, Mamat R, Ghazali MF, Awad OI, Azmi WH. A review on the application of response surface method and artificial neural network in engine performance and exhaust emissions characteristics in alternative fuel. Renewable and Sustainable Energy Reviews. 2018;90:665-86.
  • [15] Kumaran P, Natarajan S. Effect of thermal barrier coating by nanoparticle on IC engine for various biofuels - Review. IOP Conf Ser: Mater Sci Eng. 2020;993(1):012014.
  • [16] Diacon A, Călinescu I, Vinatoru M, Chipurici P, Vlaicu A, Boscornea AC, et al. Fatty acid ethyl esters (FAEE): A new, green and renewable solvent for the extraction of carotenoids from tomato waste products. Molecules. 2021;26(14),4388.
  • [17] Kumaran P, Natarajan S, Kumar AR, Jayaraj TV. Investigation of emission control on VCR diesel engine with additive and turbo-charger using algae biodiesel. AIP Conf Proc. 2023;2523(1).
  • [18] Tziourtzioumis D, Demetriades L, Zogou O, Stamatelos AM. Experimental investigation of the effect of a B70 biodiesel blend on a common-rail passenger car diesel engine. Proc Inst Mech Eng Part D J Automob Eng. 2009;223(5):685-701.
  • [19] Khalife E, Tabatabaei M, Demirbas A, Aghbashlo M. Impacts of additives on performance and emission characteristics of diesel engines during steady state operation. Progress in energy and Combustion Science. 2017;59:32-78.
  • [20] Sekhar SC, Karuppasamy K, Vedaraman N, Kabeel AE, Sathyamurthy R, Elkelawy M, et al. Biodiesel production process optimization from Pithecellobium dulce seed oil: Performance, combustion, and emission analysis on compression ignition engine fuelled with diesel/biodiesel blends. Energy Conversion and Management. 2018;161:141-54.
  • [21] Kumar S. Piston crown profile modifications for various combustion mode strategies of modified GDI engine towards NOx and PM reduction. International Journal of Automotive Science and Technology. 2020;4(4):289-94.
  • [22] Kumaran P, Natarajan S, Maheshwaran M, Rizal K, Rohith BC. Investigation on performance and emission characteristics of VCR diesel engine with different nozzles using blends of tomato seed oil. AIP Conf Proc. 2023;2523(1)
There are 22 citations in total.

Details

Primary Language English
Subjects Internal Combustion Engines, Automotive Combustion and Fuel Engineering
Journal Section Articles
Authors

Kumaran P 0000-0003-2781-8999

Natarajan S This is me 0000-0003-4601-2800

Sudesh Kumar M P This is me 0000-0002-8278-7585

Mohamed Rashid This is me 0009-0000-5209-1694

Nithish S This is me 0009-0000-7944-8403

Publication Date September 30, 2023
Submission Date July 11, 2023
Acceptance Date September 17, 2023
Published in Issue Year 2023 Volume: 7 Issue: 3

Cite

APA P, K., S, N., M P, S. K., Rashid, M., et al. (2023). Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology. International Journal of Automotive Science And Technology, 7(3), 223-233. https://doi.org/10.30939/ijastech..1326036
AMA P K, S N, M P SK, Rashid M, S N. Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology. IJASTECH. September 2023;7(3):223-233. doi:10.30939/ijastech.1326036
Chicago P, Kumaran, Natarajan S, Sudesh Kumar M P, Mohamed Rashid, and Nithish S. “Optimization of Diesel Engine Performance and Emissions Characteristics With Tomato Seed Blends and EGR Using Response Surface Methodology”. International Journal of Automotive Science And Technology 7, no. 3 (September 2023): 223-33. https://doi.org/10.30939/ijastech. 1326036.
EndNote P K, S N, M P SK, Rashid M, S N (September 1, 2023) Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology. International Journal of Automotive Science And Technology 7 3 223–233.
IEEE K. P, N. S, S. K. M P, M. Rashid, and N. S, “Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology”, IJASTECH, vol. 7, no. 3, pp. 223–233, 2023, doi: 10.30939/ijastech..1326036.
ISNAD P, Kumaran et al. “Optimization of Diesel Engine Performance and Emissions Characteristics With Tomato Seed Blends and EGR Using Response Surface Methodology”. International Journal of Automotive Science And Technology 7/3 (September 2023), 223-233. https://doi.org/10.30939/ijastech. 1326036.
JAMA P K, S N, M P SK, Rashid M, S N. Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology. IJASTECH. 2023;7:223–233.
MLA P, Kumaran et al. “Optimization of Diesel Engine Performance and Emissions Characteristics With Tomato Seed Blends and EGR Using Response Surface Methodology”. International Journal of Automotive Science And Technology, vol. 7, no. 3, 2023, pp. 223-3, doi:10.30939/ijastech. 1326036.
Vancouver P K, S N, M P SK, Rashid M, S N. Optimization of Diesel Engine Performance and Emissions Characteristics with Tomato Seed Blends and EGR Using Response Surface Methodology. IJASTECH. 2023;7(3):223-3.


International Journal of Automotive Science and Technology (IJASTECH) is published by Society of Automotive Engineers Turkey

by.png