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Paper Title

Characterisation of laser ignition in hydrogen–air mixtures in a combustion bomb

Keywords

  • Laser-Induced Spark Ignition
  • Lean Hydrogen-Air Mixtures
  • Nanosecond Pulses
  • Q-Switched Nd:YAG Laser
  • Plasma Formation
  • Combustion Phenomena
  • Flame Kernel
  • Spontaneous Emission Technique
  • Laser Plasma Propagation
  • Pressure Rise
  • Combustion Chamber
  • Piezoelectric Pressure Transducer
  • Spark Plug Ignition
  • Hydrogen-Air Mixture Ignition
  • Experimental Comparison
  • Plasma Growth
  • Laser Focusing Lens

Article Type

Research Article

Research Impact Tools

Issue

Volume : 34 | Issue : 5 | Page No : 2475-2482

Published On

March, 2009

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Abstract

Laser-induced spark ignition of lean hydrogen–air mixtures was experimentally investigated using nanosecond pulses generated by Q-switched Nd:YAG laser (wavelength 1064 nm) at initial pressure of 3 MPa and temperature 323 K in a constant volume combustion chamber. Laser ignition has several advantages over conventional ignition systems especially in internal combustion engines, hence it is necessary to characterise the combustion phenomena from start of plasma formation to end of combustion. In the present experimental investigation, the formation of laser plasma by spontaneous emission technique and subsequently developing flame kernel was measured. Initially, the plasma propagates towards the incoming laser. This backward moving plasma (towards the focusing lens) grows much faster than the forward moving plasma (along the direction of laser). A piezoelectric pressure transducer was used to measure the pressure rise in the combustion chamber. Hydrogen–air mixtures were also ignited using a spark plug under identical experimental conditions and results are compared with the laser ignition ones.

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