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Cited 6 time in webofscience Cited 9 time in scopus
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INVESTIGATION ON EFFECTS OF ENLARGED PIPE RUPTURE SIZE AND AIR PENETRATION TIMING IN REALSCALE EXPERIMENT OF SIPHON BREAKER SCIE SCOPUS

Title
INVESTIGATION ON EFFECTS OF ENLARGED PIPE RUPTURE SIZE AND AIR PENETRATION TIMING IN REALSCALE EXPERIMENT OF SIPHON BREAKER
Authors
SOON HO KANGKWON-YEONG LEEGI CHEOL LEESEONG HOON KIMDAE YOUNG CHIKYOUNGWOO SEOJUHYEON YOONKim, MHHYUN SUN PARK
Date Issued
2014-12
Publisher
한국원자력학회
Abstract
To ensure the safety of research reactors, the water level must be maintained above the required height. When a pipe ruptures, the siphon phenomenon causes continuous loss of coolant until the hydraulic head is removed. To protect the reactor core from this kind of accident, a siphon breaker has been suggested as a passive safety device. This study mainly focused on two variables: the size of the pipe rupture and the timing of air entrainment. In this study, the size of the pipe rupture was increased to the guillotine break case. There was a region in which a larger pipe rupture did not need a larger siphon breaker, and the water flow rate was related to the size of the pipe rupture and affected the residual water quantity. The timing of air entrainment was predicted to influence residual water level. However, the residual water level was not affected by the timing of air entrainment. The experimental cases, which showed the characteristic of partical sweep-out mode in the separation of siphon breaking phenomenon [2], showed almost same trend of physical properties.
URI
https://oasis.postech.ac.kr/handle/2014.oak/26724
DOI
10.5516/NET.03.2014.037
ISSN
1738-5733
Article Type
Article
Citation
Nuclear Engineering and Technology, vol. 46, no. 6, page. 817 - 824, 2014-12
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