Numerical and experimental study of the combustion phenomenon when the compression ignition is fuelled with mineral diesel

Author:

Venkatesan Hariram,J. Godwin John,Sivamani Seralathan,T. Micha Premkumar

Abstract

Purpose The purpose this experimentation is to study the combustion characteristics of compression ignition engine fuelled with mineral diesel. The reason behind the numerical simulation is to validate the experimental results of the combustion characteristics. Design/methodology/approach The numerical analysis was carried out in this study using MATLAB Simulink, and the zero dimensional combustion model was applied to predict the combustion parameters such as in cylinder pressure, pressure rise rate and rate of heat release. Findings Incorporating the dynamic combustion duration with respect to variable engine load in the zero dimensional combustion model using MATLAB Simulink reduced the variation of experimental and numerical outputs between 5.5 and 6 per cent in this analysis. Research limitations/implications Validation of the experimental analysis is very limited. Investigations were performed using zero dimensional combustion model, which is the very appropriate for analysing the combustion characteristics. Originality/value Existing studies assumed that the combustion duration period as invariant in their numerical analysis, but with the real time scenario occurring in CI engine, that is not the case. In this analysis, mass fraction burnt considering the dynamic combustion duration was incorporated in the heat transfer model to reduce the error variation between experimental and numerical studies.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering

Reference38 articles.

1. Amsden, A.A., Ramshaw, J.D., O’Rourke, P.J., Dukowicz, J.K. and Kiv, A. (1985), “A computer program for two- and three-dimensional fluid flows with chemical reactions and fuel spray”, Technical Report LA-10245-MS, Los Alamos National Lab.

2. Numerical simulation of diesel injector nozzle flow and in-cylinder spray evolution;Applied Mathematical Modelling,2016

3. Development of a zero-dimensional diesel combustion model. Part 1: analysis of the quasi-steady diffusion combustion phase;Applied Thermal Engineering,2003

4. Single zone combustion modeling of biodiesel from wastes in diesel engine;Fuel,2013

5. Numerical investigation on the effects of injection rate shaping on combustion and emission characteristics of biodiesel fueled CI engine;Applied Energy,2015

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