• Title/Summary/Keyword: Radiating gas

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Studies of the Physiological Impediments on the Silkworm(Bombyx mori L.) due to Anthracite Gas -Regarding with Carbon Monoxide and Sulphur Dioxide- (무연탄가스에 의한 가잠의 발육과 생리작용에 미치는 영향에 관한 연구-산화탄소와 무수아황산가스를 중심으로-)

  • 윤종관
    • Journal of Sericultural and Entomological Science
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    • v.10
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    • pp.1-25
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    • 1969
  • Since widely use of anthracite for the radiating purpose in a rearing room in Korea, the weakness of silkworm, poor uniformity of the worm growth, the increase of missing worm ratio, unusual cocoon assorting ratio, and the decrease of cocoon layer ratio have been realized by the author, therefore, he has started out to search the mechanism of these evil influences regarding with various gas densities and terms of the gas treatment which will be supposed to be a warning for temperature control during the silkworm reading work. Among the anthracite gas components, CO or SO$_2$ influence and their complexed harm effect were investigated through the use of anthracite gas, CO and SO$_2$ gas. Meantime, each treatment was applied, separately, during the worm egg stage, young instar, adult instar and whole instar, because the harm intensity for any improperable rearing condition is flexible by the growing stages. Meantime, the gas density and term variation were applied for the above each treatment such as in case of anthracite and CO gas, the following treat methods were used. 1) 0.06% for 30 mins. 2) 0.06% for 1 hour. 3) 0.1% for 1 hour. 4) 0.15% for 1 hour. on the other hand, SO$_2$ gas was used as 1) 120ppm for 30 mins. 2) 200ppm for 30 mins. 3) 400ppm for 30 mins. The measurement of gas density was proceeded by using CO tester (Carbon Monoxide Indicator) and SO$_2$ tester (Indicator Sampler Cgf) which could keep any specific density before each treatment.

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A Numerical Study on the Extinguishing Effects of CO2 in Counterflow Diffusion Flames with the Concept of Local Application System (국소방출방식 개념의 대향류 확산화염에서 CO2 소화효과에 관한 수치해석 연구)

  • Mun, Sun-Yeo;Park, Chung-Hwa;Hwang, Cheol-Hong;Oh, Chang-Bo
    • Fire Science and Engineering
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    • v.26 no.4
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    • pp.55-62
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    • 2012
  • The suppression mechanisms of carbon dioxide ($CO_2$) as a representative fire suppression agent were revisited using a counterflow diffusion flame which could be applied the concept of a local application system. To end this, the low strain rate $CH_4$/air counterflow diffusions with $CO_2$ addition in either fuel or oxidizer stream were examined numerically using detailed-kinetic chemistry. Radiative heat loss due to radiating gas species including $CO_2$ added was considered by the optically thin model (OTM). As a result, the critical $CO_2$ volume fractions in the oxidizer stream required to extinguish the flame were in good agreement with the experimental data reported in the literature, while somewhat under-prediction was observed with $CO_2$ added in the fuel stream. The surrogate agents were adopted to estimate the quantitative contribution with changing in global strain rate ($a_g$) on the flame extinguishment among pure dilution effect, thermal effects including radiation heat loss and chemical effect due to the $CO_2$ fire suppression agent.