Title of article :
Flow excursion instability in downward flow systems Part 1. Single-phase instability
Author/Authors :
Ishii، Mamoru نويسنده , , Babelli، Ibrahim نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2001
Pages :
-90
From page :
91
To page :
0
Abstract :
A procedure for predicting the onset of flow excursion instability in downward flows at low-pressure and low-flow conditions without boiling is presented. It is generally accepted that the onset of significant void in subcooled boiling precedes, and is a precondition to, the occurrence of static flow instability. A detailed analysis of the pressure drop components for a downward flow in a heated channel reveals the possibility of unstable transition from single-phase flow to high-quality two-phase flow, i.e. flow excursion. Low flow rate and high subcooling are the two important conditions for the occurrence of this type of instability. The unstable transition occurs when the resistance to the downward flow caused by local (orifice). frictional. and thermal expansion pressure drops equalizes the driving force of the gravitational pressure drop. The inclusion of the thermal expansion pressure drop is essential to account for this type of transition. Experimental data have still to be produced to verify the prediction of the present analysis.
Keywords :
Reactor-pressure-vessel , Boiling water reactor , Stress corrosion cracking , Low-alloy steel
Journal title :
Nuclear Engineering and Design
Serial Year :
2001
Journal title :
Nuclear Engineering and Design
Record number :
13575
Link To Document :
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