In this paper, the characteristics of the thermal damage in explosive field have been analyzed, and the technical indicators of the heat flux sensors which are used for thermal damage test have been pointed out. The structure of Gardon gauge was modeled and analyzed. And the mathematical model of Gardon gauge was improved on this basis. By expanding the mathematical model to the non-steady heat transfer stage, the response speed of the Gardon gauge is increased immensely. And also the structure of Gardon gauge was improved to meet the need of the thermal damage test in the explosion field. At last, a numerical simulation was performed on the improved gauge, which verified the feasibility of applying this gauge to the thermal damage test in the explosion field.
목차
Abstract 1. Introduction 2. The Improvements of Gardon Gauge 2.1. The Test Principles of Gardon Gauge 2.2. The Improvements of Mathematical Model 2.3. Structure Improvement 3. Simulation Analysis 3.1. The Response Time Verification 3.2. The Measuring Range Verification 3.3. The Thickness Verification 4. Conclusion References
보안공학연구지원센터(IJSIA) [Science & Engineering Research Support Center, Republic of Korea(IJSIA)]
설립연도
2006
분야
공학>컴퓨터학
소개
1. 보안공학에 대한 각종 조사 및 연구
2. 보안공학에 대한 응용기술 연구 및 발표
3. 보안공학에 관한 각종 학술 발표회 및 전시회 개최
4. 보안공학 기술의 상호 협조 및 정보교환
5. 보안공학에 관한 표준화 사업 및 규격의 제정
6. 보안공학에 관한 산학연 협동의 증진
7. 국제적 학술 교류 및 기술 협력
8. 보안공학에 관한 논문지 발간
9. 기타 본 회 목적 달성에 필요한 사업
간행물
간행물명
International Journal of Security and Its Applications
간기
격월간
pISSN
1738-9976
수록기간
2008~2016
등재여부
SCOPUS
십진분류
KDC 505DDC 605
이 권호 내 다른 논문 / International Journal of Security and Its Applications Vol.10 No.1