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Startup transient simulation for natural circulation boiling water reactors in PUMA facility
Authors:S. Kuran   Y. Xu   X. Sun   L. Cheng   H.J. Yoon   S.T. Revankar   M. Ishii  W. Wang  
Affiliation:aSchool of Nuclear Engineering, Purdue University, 400 Central Drive, West Lafayette, IN 47907, USA;bU.S. Nuclear Regulatory Commission, Mail Stop T10K8, Washington, DC 20555, USA
Abstract:In view of the importance of instabilities that may occur at low-pressure and -flow conditions during the startup of natural circulation boiling water reactors, startup simulation experiments were performed in the Purdue University Multi-Dimensional Integral Test Assembly (PUMA) facility. The simulations used pressure scaling and followed the startup procedure of a typical natural circulation boiling water reactor. Two simulation experiments were performed for the reactor dome pressures ranging from 55 kPa to 1 MPa, where the instabilities may occur. The experimental results show the signature of condensation-induced oscillations during the single-phase-to-two-phase natural circulation transition. The results also suggest that a rational startup procedure is needed to overcome the startup instabilities in natural circulation boiling water reactor designs.
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