Flame flow tagging velocimetry with 193-nm H2O photodissociation

In a new nonintrusive, instantaneous flow tagging method called hydroxyl tagging velocimetry (HTV), a molecular grid of hydroxyl (OH) radicals is written into a flame and the displaced grid is imaged at a later time to give the flame's velocity profile. Single-photon photodissociation of vibrat...

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Veröffentlicht in:Applied optics (2004) 1999-11, Vol.38 (33), p.6912-6917
Hauptverfasser: Wehrmeyer, J A, Ribarov, L A, Oguss, D A, Pitz, R W
Format: Artikel
Sprache:eng
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Zusammenfassung:In a new nonintrusive, instantaneous flow tagging method called hydroxyl tagging velocimetry (HTV), a molecular grid of hydroxyl (OH) radicals is written into a flame and the displaced grid is imaged at a later time to give the flame's velocity profile. Single-photon photodissociation of vibrationally excited H(2)O, when a 193-nm ArF excimer laser is used, produces a tag line of superequilibrium OH and H photoproducts in a high-temperature flow field that itself may contain ambient OH. The tag line OH concentration is composed mostly of direct OH photoproducts, but OH is also indirectly produced through H photoproduct reactions with oxygen-bearing species. For lean and modestly rich flames the OH tag lifetime is of the order of 1 ms. For very rich H(2)-air flames (equivalence ratio of 4.4) the lifetime drops to 200 ns. After displacement the position of the OH tag line is revealed through fluorescence caused by OH (A-X) (3
ISSN:1559-128X
DOI:10.1364/AO.38.006912