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Dive into the research topics where K. Nanthagopal is active.

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Featured researches published by K. Nanthagopal.


Clean Technologies and Environmental Policy | 2017

Study on the effect of exhaust gas-based fuel preheating device on ethanol–diesel blends operation in a compression ignition engine

K. Nanthagopal; B. Ashok; Vignesh Varatharajan; V. K. Anand; R. Dinesh Kumar

Rapid depletion of fossil fuels and stringent emission regulations compel the scientific community to search for alternative energy sources for the internal combustion engines. Among many alternative biofuels, ethanol is getting worldwide attention for compression ignition engine either in the form of partial substitute or complete replacement for diesel fuel. Ethanol fuel has certain undesirable properties like poor flammability limit which results in cold starting issues and higher hydrocarbon emission which restricts their use in compression ignition engine. This issue can be easily overcome by preheating of ethanol fuel before it gets admitted inside the engine cylinder. In the present study, a standard preheating device is designed and fabricated in accordance with engine specifications and simulations were carried out under various operating conditions to evaluate its performance. Furthermore, experimental investigations were carried out in a compression ignition engine fueled with ethanol blends of 20 and 30% with diesel by volume and the fuel blends were preheated using burned exhaust gases. In addition, a comparative study has been carried out for preheated and non-preheated blends of E20 (20% of ethanol and 80% of diesel) and E30 with baseline diesel. The experimental results show that the preheated E20 (20% of ethanol and 80% of diesel) blend has higher brake thermal efficiency of 36.28% with a significant reduction in brake specific fuel consumption when compared with all the other blends. Moreover, the preheated E20 blend reduces the carbon monoxide, unburned hydrocarbon and smoke emissions by 49, 48 and 10%, respectively. However, the NOx emission is increased by 6% as compared to the non-preheating effect. It is also noted that the preheating of ethanol blends produced better combustion results with a significant reduction in the ignition delay period. Hence, it can be concluded that the ethanol fuel can be effectively used in a diesel engine by means of preheating using exhaust gases and could be a viable option for diesel engine applications.


Energy Conversion and Management | 2016

An assessment on performance, combustion and emission behavior of a diesel engine powered by ceria nanoparticle blended emulsified biofuel

M. Annamalai; B. Dhinesh; K. Nanthagopal; P. SivaramaKrishnan; J. Isaac JoshuaRamesh Lalvani; M. Parthasarathy; K. Annamalai


Energy Conversion and Management | 2017

Lemon peel oil – A novel renewable alternative energy source for diesel engine

B. Ashok; R. Thundil Karuppa Raj; K. Nanthagopal; Rahul Krishnan; Rayapati Subbarao


Thermal Science | 2011

Hydrogen enriched compressed natural gas (HCNG): A futuristic fuel for internal combustion engines

K. Nanthagopal; Rayapati Subbarao; Thangavelu Elango; Ponnusamy Baskar; K. Annamalai


Thermal Science | 2011

Numerical investigation on the effect of injection pressure on the internal flow characteristics for diethyl ether, dimethyl ether and diesel fuel injectors using CFD

Thulasi Vijayakumar; Karrupa Raj Rajagopal Thundil; K. Nanthagopal


Thermal Science | 2009

Experimental investigation and performance evaluation of DI diesel engine fueled by waste oil-diesel mixture in emulsion with water

K. Nanthagopal; Rayapati Subbarao


Journal of Cleaner Production | 2017

Experimental studies on the effect of metal oxide and antioxidant additives with Calophyllum Inophyllum Methyl ester in compression ignition engine

B. Ashok; K. Nanthagopal; Rayapati Subbarao; Ajith Johny; Aravind Mohan; A. Tamilarasu


Energy Conversion and Management | 2018

An assessment on the effects of 1-pentanol and 1-butanol as additives with Calophyllum Inophyllum biodiesel

K. Nanthagopal; B. Ashok; B. Saravanan; Deepam Patel; B. Sudarshan; R. Aaditya Ramasamy


Energy Conversion and Management | 2018

An experimental study on the effect of nanoparticles with novel tamarind seed methyl ester for diesel engine applications

V. Dhana Raju; P. S. Kishore; K. Nanthagopal; B. Ashok


Waste and Biomass Valorization | 2018

Influence of Exhaust Gas Recirculation on Combustion and Emission Characteristics of Diesel Engine Fuelled with 100% Waste Cooking Oil Methyl Ester

K. Nanthagopal; R. Thundil Karuppa Raj; B. Ashok; T. Elango; S. V. Saravanan

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B. Dhinesh

Mepco Schlenk Engineering College

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K. Annamalai

Madras Institute of Technology

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