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논문 기본 정보

자료유형
학위논문
저자정보

박진 (충남대학교, 忠南大學校 大學院)

지도교수
김홍집
발행연도
2018
저작권
충남대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (3)

초록· 키워드

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CBD(Center Body Diffuser) is one of the latest technologies in high altitude simulation test facilities. This is one of supersonic diffuser that uses a strong momentum of high-speed and high-pressure fluid injected from the nozzle to drop pressure of the chamber surrounding the nozzle, decelerate the flow, and discharge it. To investigate the performance characteristics of the center body diffuser, numerical analysis was performed. The numerical results are verified by comparing the results of the wall pressure test of the sub-scaled diffuser. In this study, the effect of the center body position on the diffuser characteristics was investigated, and the effect of the multi cone type center body inspired by the ramjet inlet was also investigated. And burnt gas flow analysis for the design of CBD cooling system was conducted. The results of the study are summarized as follows.

1) As the position of the center body in the CBD moves to the downstream of the Diffuser, the CBD tends to start at a lower operating pressure because the plume is formed without being disturbed by the structure and has a large momentum.

2) However, In the vicinity of (Ld/Dst) = 1, the starting pressure was maximum due to incomplete development of supersonic flow, Even when diffuser was started, vacuum pressure was about 200 Pa higher than in the other cases.

3) As the center body position in the CBD moves to the downstream of the diffuser, the strength of the collision with the CB becomes stronger, so that the radial momentum becomes large and the supersonic flow flows along the inner wall. On the other hand, if CB is located upstream of the diffuser, it flows in the opposite direction to the CB.

4) In the case of multi cone type instead of single cone type, the supersonic flow is smoothly discharged and the starting pressure is lowered by 2 bar. However, the vacuum chamber pressure increased by 200 Pa due to the reduction of the entrainment phenomenon near the entrance of the vacuum chamber.

5) The simulated altitude changes depending on the change of temperature at combustion chamber and the change of properties of the working fluid.

6) The upstream of the diffuser is a supersonic region, so the temperature is relatively low, and at the downstream of the diffuser the temperature rises close to the combustion chamber temperature.

목차

Nomenclature ⅲ
List of Figures ⅴ
List of Tables ⅷ
1. 서 론 1
1.1 연구 배경 1
1.2 연구 목적 6
2. 이론적 고찰 7
2.1 초음속 디퓨저의 원리 7
2.2 지배 방정식 9
2.1.1 연속방정식 9
2.1.2 운동량방정식 10
2.1.3 에너지방정식 10
2.1.4 난류모델방정식 11
3. 디퓨저 유동 해석 방법 13
3.1 해석 대상 및 조건 13
3.1.1 해석 대상 13
3.1.2 해석 방법 14
3.1.3 해석의 신뢰성 검증 15
3.2 다중 cone 모델링 17
4. CenterBody의 위치와 형상 변화 19
4.1 CenterBody의 위치 19
4.1.1 수치해석 케이스 19
4.1.1 수치해석 결과 20
4.2 다중 Cone 형상의 Center Body 27
4.2.1 수치해석 결과 27
5. CBD 내부 열유동 특성 29
5.1 열유동 해석의 필요성과 해석을 위한 가정 29
5.2 수치해석 결과 29
5.3 Cold gas와 Burnt gas 해석 결과 비교 31
6. 결론 33
Reference 34
ABSTRACT 37

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