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KCI 등재
열분해반응기 이젝터 적용에 따른 열유동 및 입자 거동 특성
Thermal Flow and Particle Behavior Characteristics in Ejector Applied Thermal Decomposition Reactor
송형운 ( Hyoungwoon Song ) , 윤종혁 ( Jonghyuk Yoon ) , 정희숙 ( Hee Suk Jung )
DOI 10.26511/JKSET.21.4.6
UCI I410-ECN-0102-2021-500-001389550

In this study, a numerical study is performed on the thermal flow characteristics of a pyrolysis reactor to which an ejector was applied that enables heat recovery through internal gas recirculation. Depending on the ejector figure, the recirculation rate of the high temperature internal gas in the reactor is increased upto a maximum of 6.49 %, and the heat recovery rate is improved upto 14.7 %. In addition, a high-temperature internal gas circulation rate of 3.39 % is observed in a small-scale model based on the similitude theory. Among the silicon dioxide particles introduced into the small-scale reactor, the maximum particle diameter released through the outlet was numerically measured to be 78 ㎛, and about 40 % of the silicon dioxide particles were collected from the internal recirculation path at the bottom of reactor.

Ⅰ. 서론
Ⅱ. 수치해석
Ⅲ. 반응기 설계 및 경계조건
Ⅳ. 결과 및 고찰
Ⅴ. 결론
감사의 글
References
[자료제공 : 네이버학술정보]
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