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Investigation on the combustion and performance characteristics of a DI free piston linear generator engine fuelled with CNG-CO2 blend

  • Wasiu B. Ayandotun*
  • , A. Rashid A. Aziz
  • , Zainal A.B. Abdul Karim
  • , Salah E. Mohammed
  • , Ezrann Z. Zainal A.
  • , Ahmed T. Raheem
  • , Mhadi A. Ismael
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

A free-piston linear generator (FPLG) is a novel engine device that can operate with different types of fuel owing to its varying compression ratio to generate electrical energy. In this paper, an experimental test rig is developed and tested to achieve a steady-state operating condition. The engine is fuelled with a premixed mixture of compressed natural gas and carbon dioxide having 80% and 20% proportion by volume. The combustion and performance characteristics of the engine are investigated at various injection positions, ignition velocities, and lambda. The results reveal that engine combustion characteristics and performance are improved when the lambda tends towards a rich mixture, and the injection position is advanced. However, there is a limitation for the ignition velocity, nonetheless, the peak power is found at 1.0 m/s ignition velocity. Based on the optimum condition, the peak rate of heat released obtained is 178.94 kJ/s and the peak output power generated is 1790 W. The FPLG engine's combustion efficiency, mechanical efficiency, and indicated thermal efficiency are 29.5%, 41.4%, and 12.2%, respectively. The engine displays high stability of 5.4% when fuelled with CNG-CO2.

Original languageEnglish
Article number117441
JournalApplied Thermal Engineering
Volume198
DOIs
StatePublished - 5 Nov 2021
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2021 Elsevier Ltd

Keywords

  • CNG-CO
  • Combustion characteristics
  • Direct injection
  • Free-piston engine
  • Linear generator

ASJC Scopus subject areas

  • Energy Engineering and Power Technology
  • Mechanical Engineering
  • Fluid Flow and Transfer Processes
  • Industrial and Manufacturing Engineering

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