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Experimental investigation of combustion characteristics for spray combustion by impinging injection in a closed vessel

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Języki publikacji
EN
Abstrakty
EN
Internal combustion engines are the major source of air pollution. Especially, compression ignition engines in today’s automobiles contribute the most to particulate emission and soot, and it is recognized that these emissions have a detrimental effect on human and earth environment. So, an improvement of spray combustion for diesel engines is of urgent necessity. Experiments have been conducted to obtain essential data on spray combustion influenced by impinging injection in a closed vessel. The effect of the impinging injection on maximum burning pressure, total burning time and flame speed is investigated at the condition of 300 K of initial temperature and 0.1 MPa of initial pressure. The travel time of flame front is measured by ionization probes located at two different positions from the center of combustion chamber. The experimental investigations pointed out that the maximum burning pressure for impinging injection is larger than that of the single injection at the same overall equivalence ratio, the total burning time increases with increasing the overall equivalence ratio (after injection) at same equivalence ratio (before injection), the combustion of impinging injection is very effective for increasing the flame speed.
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autor
autor
  • Faculty of Engineering Hosei University,3-7-2 Kajino-cho, Koganei Tokyo, 184-8584 Japan tel.: +8142 387-6149, fax: 81 42 387-6121, kawakami@k.hosei.ac.jp
Bibliografia
  • [1] Arai,M.. et al.: Inter-impingement process of diesel sprays, ILASS-ASIA-99, P.27-32 (1999)
  • [2] Chiba,T. et al.: Inter-Spray Impingement of Two Diesel Sprays, ICLASS200, P.1272-1278 (2000)
  • [3] Iwabuchi,Y. et al.: Trial of New Concept Diesel Combustion System, SAE Paper 199-01-0185
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ5-0019-0025
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