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평균 양방향 튜브의 설계 최적화를 위한 FLUENT 코드해석
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  • 평균 양방향 튜브의 설계 최적화를 위한 FLUENT 코드해석
저자명
강경호,윤병조,어동진,백원필,Kang. Kyong-Ho,Yun. Byong-Jo,Euh. Dong-Jin,Baek. Won-Pil
간행물명
유체기계저널
권/호정보
2005년|8권 4호|pp.14-19 (6 pages)
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유체기계공업학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Average Bi-directional flow tube was suggested to measure single and two phase flow rate. Its working principle is similar with Pilot tube, however, it makes it possible to eliminate the cooling system which is normally needed to prevent from flashing in the pressure impulse line of Pilot tube when it is used in the depressurization condition. 3-dimensional steady state flow analyses using FLUENT 5.4 code were performed to validate the application of the average bi-directional flow tube in case of water and air flow. In this study, sensitivity studies have been performed to optimize the design features of the average bi-directional flow tube which can be applied for the various experimental conditions. For Re numbers above 1000, the k values are nearly constant regardless of the Re numbers and flow types and calculation results and experimental data coincides quite well. The current FLUENT calculation results suggest that linearity of the k values in various design features of the average BDFT is highly promising, which means that it is quite reasonable to select the typical design of the average BDFT for the convenience of the experimental conditions.