Experimental Investigations of Various Modes of Charging on HCCI Engine

Author:

Prasad A. Renuka1,Bhandari Rakesh2,Jagadish Donepudi3

Affiliation:

1. Sangam University , Department of Mechanical Engineering , NH-79, Bhilwara Chittor By-Pass, Bhilwara , Rajasthan, India

2. Sangam University , Dept. of Mechanical Engineering , NH-79, Bhilwara Chittor By-Pass, Bhilwara , Rajasthan, India

3. Narsaraopeta Engineering College , Department of Mechanical Engineering Kotappakonda Road, Narasaraopet, Guntur , Andhra Pradesh 522601 , India

Abstract

Abstract Homogeneous Charged Compression Ignition technology is most favourable or suitable for Internal Combustion engines for reducing the exhaust emissions and enhances the Thermal efficiency, improve the fuel consumption, and increase the rate of combustion. This article represents the various charging methods on HCCI technology engine; it improves the engine performance and determines the emission characteristics of HCCI technology engine. The homogeneous mixture prepared with different methods. In–cylinder internal homogeneous mixture preparation method applied in this present work. It reduces the exhaust emissions released from the combustion chamber. However, oxides of nitrogen and soot emissions are significantly reduce, because combustion starts at lower temperatures and various points in combustion chamber. The HCCI technology generates small amount of exhaust emissions and it improves the performance of the engine. In addition, performance and released emissions depends on the quality and quantity of homogeneous mixture.

Publisher

Walter de Gruyter GmbH

Reference20 articles.

1. [1] Srinivasu Goteti, G., Selvan, T. P., HCCI Combustion in a Diesel engine using Oxygenated fuels and various operating parameters A Review, International Journal of Renewable Energy Research, Vol. 7, No. 3, pp. 1166-1173, 2017.

2. [2] Yumon, S.,, Nyein Aye San, Htay Win, Numerical analysis of combustion process in CNG HCCI engine, International Journal of Mechanical and Production Engineering, Vol. 3, Is. 7, pp. 56-61, 2015.

3. [3] Kaiser, E. W., et al., Homogenous charged compression ignition engine-out emissions – does flame propagation occur in homogeneous compression ignition? Int. J. of Engines Research, Vol. 3, No. 4, pp. 185-195, 2002.10.1243/146808702762230897

4. [4] Ramana, P. V., et al., Development of alternative fuels for HCCI engine technology, IJDER, pp. 108-119, 2015.

5. [5] Kalian, N., Investigation of CAI and SI combustion in a 4-cylinder direct injection gasoline engine, PhD thesis, 2006.

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