Title of article :
Simulation of reactivity transients in current MTRs
Author/Authors :
Mirza، نويسنده , , Anwar M.; Khanam، نويسنده , , Salma; Mirza، نويسنده , , Nasir M، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Abstract :
This work aims at simulation of reactivity induced transients in
High Enriched Uranium (HEU) and Low Enriched Uranium (LEU) cores of a
typical Material Test research Reactor (MTR) using PARET code. The transient
problem was forced through specification of externally inserted reactivity
as a function of time. Reactivity insertions are idealized by ramps and steps.
Superdelayed-critical transients, superprompt-critical transients and quasistatic
transients are selected for the analysis. Ramp and step reactivity
functions were employed to simulate these perturbations. The effect of initial
power on transient behavior has also been investigated. The low enriched
uranium core is analyzed for transients without scram. The magnitudes of
maximum reactivity insertions are chosen to be in the range of $0.05 to 2.0 for
different reactivity insertion times. Transient simulation with scram reveals
that response of both HEU and LEU-cores is similar for selected ʹrampsʹ and
ʹstepsʹ. The difference is observed in the peak values of power and coolant,
clad and fuel temperatures. Trip level is achieved earlier in case of LEU-core.
The peak clad temperatures in both LEU and HEU-cores remain below the
melting point of aluminum-clad for the selected reactivity insertions. Simulation
show that the LEU-core is more sensitive to perturbations at low power as
compared to the transients at full power. For reactivity transients at low power
level, power rises sharply to a higher peak value. In transients at full power,
the peak power barely exceeds the trip level. The power oscillations after the
first peak are observed for transients without scram.
Journal title :
Annals of Nuclear Energy
Journal title :
Annals of Nuclear Energy