On minimum ignition energy of droplets

碩士 === 國立清華大學 === 動力機械學系 === 82 === Ignition temperature and ignition energy of a single droplet in a finite domain are analyzed numerically. The effects of distance between droplets and droplet size are investigated in detail. In addition,...

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Main Authors: Chen, Shin Jiun, 陳馨鈞
Other Authors: Sheu, Wen Jenn
Format: Others
Language:zh-TW
Published: 1994
Online Access:http://ndltd.ncl.edu.tw/handle/61987594255652875538
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spelling ndltd-TW-082NTHU03110202016-07-18T04:09:48Z http://ndltd.ncl.edu.tw/handle/61987594255652875538 On minimum ignition energy of droplets 油滴之最小引燃能量研究 Chen, Shin Jiun 陳馨鈞 碩士 國立清華大學 動力機械學系 82 Ignition temperature and ignition energy of a single droplet in a finite domain are analyzed numerically. The effects of distance between droplets and droplet size are investigated in detail. In addition, the influence of the initial concentration of the fuel vapor on ignition is studied. The results show that the ignition energy decreases as the droplet size and the initial concentration of fuel vapor increases. The results also show that there exists a minimun ignition temperature if the ambient radius is 40 times of the droplet radius. As the ambient radius is 70 times of the droplet radius, the droplet can be considered to be in an infinite ambience. Sheu, Wen Jenn 許文震 1994 學位論文 ; thesis 50 zh-TW
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language zh-TW
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description 碩士 === 國立清華大學 === 動力機械學系 === 82 === Ignition temperature and ignition energy of a single droplet in a finite domain are analyzed numerically. The effects of distance between droplets and droplet size are investigated in detail. In addition, the influence of the initial concentration of the fuel vapor on ignition is studied. The results show that the ignition energy decreases as the droplet size and the initial concentration of fuel vapor increases. The results also show that there exists a minimun ignition temperature if the ambient radius is 40 times of the droplet radius. As the ambient radius is 70 times of the droplet radius, the droplet can be considered to be in an infinite ambience.
author2 Sheu, Wen Jenn
author_facet Sheu, Wen Jenn
Chen, Shin Jiun
陳馨鈞
author Chen, Shin Jiun
陳馨鈞
spellingShingle Chen, Shin Jiun
陳馨鈞
On minimum ignition energy of droplets
author_sort Chen, Shin Jiun
title On minimum ignition energy of droplets
title_short On minimum ignition energy of droplets
title_full On minimum ignition energy of droplets
title_fullStr On minimum ignition energy of droplets
title_full_unstemmed On minimum ignition energy of droplets
title_sort on minimum ignition energy of droplets
publishDate 1994
url http://ndltd.ncl.edu.tw/handle/61987594255652875538
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