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http://dx.doi.org/10.20466/KPVP.2016.12.2.058

CFD Analysis for Steam Jet Impingement Evaluation  

Choi, Choengryul ((주)엘쏠텍)
Oh, Se-Hong ((주)엘쏠텍)
Choi, Dae Kyung ((주)엘쏠텍)
Kim, Won Tae ((주)아리텍)
Chang, Yoon-Suk (경희대 원자력공학과)
Kim, Seung Hyun (경희대 원자력공학과)
Publication Information
Transactions of the Korean Society of Pressure Vessels and Piping / v.12, no.2, 2016 , pp. 58-65 More about this Journal
Abstract
Since, in case of high energy piping, steam jets ejected from the rupture zone may cause damage to nearby structure, it is necessary to design it into consideration of nuclear power plant design. For the existing nuclear power plants, the ANSI / ANS 58.2 technical standard for high-energy pipe rupture was used. However, the US Nuclear Regulatory Commission (USNRC) and academia recently have pointed out the non-conservativeness of existing high energy pipe fracture evaluation methods. Therefore, it is necessary to develop a highly reliable evaluation methodology to evaluate the behavior of steam jet ejected during high energy pipe rupture and the effect of steam jet on peripheral devices and structures. In this study, we develop a method for analyzing the impact load of a jet by high energy pipe rupture, and plan to carry out an experiment to verify the evaluation methodology. In this paper, the basic data required for the design of the jet impact load experiment equipment under construction, 1) the load change according to the jet distance, 2) the load change according to the jet collision angle, 3) the load variation according to structure diameter, and 4) the load variation depending on the jet impact position, are numerically obtained using the developed steam jet analysis technique.
Keywords
High-Energy Pipeline; Steam Jet; Jet Impingement; Dynamic Load; CFD (Computational Fluid Dynamics);
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