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Original Articles

Experimental Study on Diesel Engine Using Hybrid Fuel Blends

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Pages 655-668 | Published online: 02 Sep 2011

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Read on this site (12)

C. M. Sivaraja, G. Sakthivel & Vivek Ramesh Warke. (2018) Selection of optimum fuel blend to empower the energy efficiency in IC engine using decision system. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 40:6, pages 693-708.
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Gnanasekaran Sakthivel, Sivakumar R, Mani Ilangkumaran & Bernard W. Ikua. (2016) Selection of optimum fish oil fuel blend to reduce the greenhouse gas emissions in an IC engine—A hybrid multiple criteria decision aid approach. International Journal of Green Energy 13:14, pages 1517-1533.
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Akhilesh Kumar Choudhary, H. Chelladurai & C. Kannan. (2016) Performance analysis of bioethanol (Water Hyacinth) on diesel engine. International Journal of Green Energy 13:13, pages 1369-1379.
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M. Ilangkumaran, G. Sakthivel & G. Nagarajan. (2016) Artificial neural network approach to predict the engine performance of fish oil biodiesel with diethyl ether using back propagation algorithm. International Journal of Ambient Energy 37:5, pages 446-455.
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T. Balamurugan & R. Nalini. (2016) Experimental study on performance, combustion and emission characteristics of a four-stroke diesel engine using blended fuel. International Journal of Ambient Energy 37:3, pages 237-246.
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N. Balakrishnan, K. Mayilsamy & N. Nedunchezhian. (2015) An Investigation of the Performance, Combustion, and Emission Characteristics of a CI Engine Fueled with Used Vegetable Oil Methyl Ester and Producer Gas. International Journal of Green Energy 12:5, pages 506-514.
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M. Ilangkumaran, G. Sakthivel, U. Syam Kumar, M. Vasudevan, S. Venkatesh & B. Viswanathan. (2015) Development of fuzzy logic model to predict the engine performance of fish oil biodiesel with diethyl ether. International Journal of Ambient Energy 36:3, pages 142-154.
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Gnanasekaran Sakthivel, Mani Ilangkumaran, Govindan Nagarajan, G. Vasuki Priyadharshini, Subramanian Dinesh Kumar, Shekar Satish Kumar, Kettal Sarangapani Suresh, Govindan Thirumalai Selvan & Thirunavukarasu Thilakavel. (2014) Multi-criteria decision modelling approach for biodiesel blend selection based on GRA–TOPSIS analysis. International Journal of Ambient Energy 35:3, pages 139-154.
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T. Mohanraj & K. Murugu Mohan Kumar. (2013) Operating Characteristics of a Variable Compression Ratio Engine Using Esterified Tamanu Oil. International Journal of Green Energy 10:3, pages 285-301.
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A. Anbarasu, M. Saravanan & M. Loganathan. (2013) The Effect of Ethanol Addition in a Biodiesel Operated DI Diesel Engine on Combustion, Performance, and Emission Characteristics. International Journal of Green Energy 10:1, pages 90-102.
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S. Savariraj, T. Ganapathy & C.G. Saravanan. (2012) Performance and emission characteristics of diesel engine using high-viscous vegetable oil. International Journal of Ambient Energy 33:4, pages 193-203.
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Articles from other publishers (16)

B. Deepanraj, A. Ashok, S.K. Gugulothu, Ragireddy Venkat Reddy, N. Senthilkumar, Zafar Said & Mrinal Bhowmik. (2023) Enhancement of RCCI engine characteristics of Jatropha oil biodiesel as high reactivity fuel and 1-pentanol as low reactivity fuel with variable injection timing. Fuel 348, pages 128390.
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Melina Espanhol Soares, Ana Julia Araujo, Flávio Soares Silva, Milady Renata Apolinário Silva & Nathalia Vieira Barbosa. (2021) Regeneration of transformer oil using a microemulsion with Triton X-100. Brazilian Journal of Chemical Engineering 40:3, pages 901-911.
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K.S. Mehra, V. Goel, S. Singh, Gaurav Pant & A.K. Singh. (2023) Experimental investigation of emission characteristics of CI engine using biodiesel-diesel blends and best fuel selection: An AHP-TOPSIS approach. Materials Today: Proceedings.
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G Sunil Chaitanya, M Raj Kumar & R Deivanathan. (2020) Multi criteria decision making approach for selection of biodiesel blend using AHP-TOPSIS analysis. Journal of Physics: Conference Series 1716:1, pages 012022.
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Fatemeh Sadat Mirhashemi & Hassan Sadrnia. (2020) NOX emissions of compression ignition engines fueled with various biodiesel blends: A review. Journal of the Energy Institute 93:1, pages 129-151.
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Himansh Kumar, A.K. Sarma & Pramod Kumar. (2020) A comprehensive review on preparation, characterization, and combustion characteristics of microemulsion based hybrid biofuels. Renewable and Sustainable Energy Reviews 117, pages 109498.
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Chiranjib Bhowmik, Sumit Bhowmik & Amitava Ray. 2019. Advanced Multi-Criteria Decision Making for Addressing Complex Sustainability Issues. Advanced Multi-Criteria Decision Making for Addressing Complex Sustainability Issues 94 114 .
T. Balamurugan, A. Arun & G.B. Sathishkumar. (2018) Biodiesel derived from corn oil – A fuel substitute for diesel. Renewable and Sustainable Energy Reviews 94, pages 772-778.
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Warke Vivek Ramesh & G. Sakthivel. (2018) Selection of Optimum Fuel Blend in an Ic Engine Using Fahp-Promethee. IOP Conference Series: Materials Science and Engineering 390, pages 012028.
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Ali Turkcan. (2018) Effects of high bioethanol proportion in the biodiesel-diesel blends in a CRDI engine. Fuel 223, pages 53-62.
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G. Sakthivel, R. Sivakumar, N. Saravanan & Bernard W. Ikua. (2017) A decision support system to evaluate the optimum fuel blend in an IC engine to enhance the energy efficiency and energy management. Energy 140, pages 566-583.
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C.M. Sivaraja & G. Sakthivel. (2017) Compression ignition engine performance modelling using hybrid MCDM techniques for the selection of optimum fish oil biodiesel blend at different injection timings. Energy 139, pages 118-141.
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K. S. S. Rao Yarrapragada & B. Bala Krishna. (2016) Impact of tamanu oil-diesel blend on combustion, performance and emissions of diesel engine and its prediction methodology. Journal of the Brazilian Society of Mechanical Sciences and Engineering 39:5, pages 1797-1811.
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B.S. Bidita, A.R. Suraya, M.A. Shazed, M.A. Mohd Salleh & A. Idris. (2016) Preparation, characterization and engine performance of water in diesel nanoemulsions. Journal of the Energy Institute 89:3, pages 354-365.
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K. Muralidharan & D. Vasudevan. (2014) Applications of artificial neural networks in prediction of performance, emission and combustion characteristics of variable compression ratio engine fuelled with waste cooking oil biodiesel. Journal of the Brazilian Society of Mechanical Sciences and Engineering 37:3, pages 915-928.
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G. Sakthivel, M. Ilangkumaran & Aditya Gaikwad. (2015) A hybrid multi-criteria decision modeling approach for the best biodiesel blend selection based on ANP-TOPSIS analysis. Ain Shams Engineering Journal 6:1, pages 239-256.
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