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Two-Phase Flow Studies in Steam Separators Using Interface Capturing Simulations

delete2025-10-15
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OA
AI
T
Taylor Grubbs *
I
Igor A. Bolotnov
DOI:10.3390/jne6040042delete
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Abstract

Abstract

En 中文
The two-phase flow within a Boiling Water Reactor steam separator is investigated using an interface capturing method. The simulations are focused on resolving the flow around the first pickoff ring which is the highest contributor to steam carryunder phenomenon. Multiple simulations are conducted of varying levels of resolution to evaluate the capabilities of interface capturing technique for this challenging problem. First, high-resolution simulations of the flow using a simplified 30 degrees wedge are conducted without a swirling velocity field present in the actual system. In order to understand the flow field generated by the separator swirler, secondary simulations of single-phase flow passing through a swirler model are conducted. Using this information, a coarse simulation of the full 360 degrees model was performed, which incorporated the effect of the swirler using a custom inflow boundary condition. Instantaneous carryunder/carryover along with void fraction and film thickness are evaluated at the pickoff ring entrance. Overall, these simulations demonstrate that interface capturing simulations can be an accurate tool for studying full-scale components within nuclear power plants.
Keywords:
steam separator
interface capturing
DNS

Journal

J
Journal of Nuclear Engineering
IF:
1.2
Papers:
48
Citations:
0

Organization

N
North Carolina State University
Scholars:
2.6W
Papers: 2.3W
Citations: 3.7W