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An Empirical Correlation for Critical Flow Rates of Subcooled Water Through Short Pipes with Small Diameters
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  • An Empirical Correlation for Critical Flow Rates of Subcooled Water Through Short Pipes with Small Diameters
  • An Empirical Correlation for Critical Flow Rates of Subcooled Water Through Short Pipes with Small Diameters
저자명
Park. Choon-Kyung,Park. Jee-Won,Chung. Moon-Ki,Chun. Moon-Hyun
간행물명
Journal of the Korean Nuclear Society
권/호정보
1997년|29권 1호|pp.35-44 (10 pages)
발행정보
한국원자력학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Critical too-Phase flow rates of subcooled water through Short Pipes (L 140039n) with small diameters (D$leq$7.15 min) have been experimentally investigated for wide ranges of subcooling (0~199$^{circ}C$) and pressure (0.5~2.0 MPa). To examine the effects of various parameters (i.e., the location of flashing inception, the degree of subcooling, the stagnation temperature and pressure, and the pipe size) on the critical two-phase flow rates of subcooled water through short pipes with small diameters, a total of 135 runs were made for various combinations of test parameters using four different L/D test sections. Experimental results that show effect of various parameters on subcooled critical two phase flow rates are presented in the form of graphs such as the dimensionless mass flux ( $G^{*}$) versus the dimensionless subcooling ( $T_{sub}$$^{*}$) curve. An empirical correlation expressed in terms of a dimensionless subcooling is also obtained for subcooled two-phase flow rates through present test sections. Comparisons between the mass fluxes calculated by present correlation and a total of 755 selected experimental data points of 9 different investigators show that the agreement is fairly good except for very low subcooling data obtained from small L/D (less than 10) orifices.s.s.s.