• Title/Summary/Keyword: Oxyhydrogen flame

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Plasma spectroscopy aimed at quantifying the flame equivalence ratio (화염의 정성적 당량비 측정을 위한 Plasma Diagnostics에 관한 연구)

  • Lee, SeokHwan;Yoh, Jai-ick
    • 한국연소학회:학술대회논문집
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    • 2013.06a
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    • pp.99-101
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    • 2013
  • The equivalence ratio is measured by LIBS(Laser-induced Breakdown spectroscopy) in hydrocarbon flame and high temperature (${\sim}3200^{\circ}C$) oxyhydrogen flame, where a stoichiometric mixture of hydrogen and oxygen is produced from water through electrolysis. The ratio of the hydrogen and oxygen (H/O) atomic lines intensities is used for quantitatively determining the quivalence ratio. laser energy is evaluated for determining the optimal condition for plasma diagnostics. The minimum laser energy for generating plasma in a laminar premixed hydrocarbon flame was about 70 mJ, whereas oxyhydrogen flame. consequently the irradiated spot of a lower density in high temperature oxyhydrogen flame gave rise to bigger plasma in size, thus limiting the spatial resolution of the LIBS measurement.

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Growth of Sapphire Crystals by Verneuil Method (Verneuil법에 의한 Sapphire단결정 성장)

  • Joo, K.;Bae, S.Y.;Choi, J.K.;Orr, K.K.;Son, S.K.;Beun, Y.J.;Chun, H.T.
    • Journal of the Korean Ceramic Society
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    • v.25 no.5
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    • pp.495-501
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    • 1988
  • Verneuil method uses oxyhydrogen flame for its heat source. This method was used to grow corundum monocrystals. Parametersof this method are feeding rate, gas pressure, lowering rate and growth axis. These parameters were examined. Crystals's qualities and shapes are affected by these parameters. Crystals having good qualities and shape were grown under the conditions that feeding rate, 0.2∼0.5g/min, lowering rate, 10∼20mm/hr ; gas pressure, 3∼4psi ; growth axis was shifted 60 degrees from c axis.

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