Nuclear Computational Science Research

Vision

To apply nuclear reactor physics to interpret the physical phenomena occurring in the reactor core and find solutions that can be applied to various reactor designs. In addition, we provide the best engineering solutions to our customers through advanced technology combining computer science and artificial intelligence.

Mission

To provide the highly reliable technology in neutronics that can be applied to computational science, and perform professional AI engineering with AI products (Solution), and furthermore engineer services to several nuclear organizations and industries such as KHNP, KEPCO, KINAC and KAERI with development of unique S/W programs for worldwide application.

Solution

To dedicate outage response for assisting with various issues such as core design optimization, analytical code development, advanced reactor design, and more valuable to utilize the accumulated nuclear industry data through artificial intelligence technology.



McFLOP : Multi-Cycle multi-objective Fuel Loading pattern Optimization Program

GENRE_LP : GENerator for REsearch reactor optimal Loading Pattern

LF_TRACER : Load-Following TRACER

FAMER : Flowing fuel based Advanced MSR fuel cycle analyzER

POWER : Program for Optimization of Waste package Emplacement in Repository

PENECA-F : Program for Equilibrium and Non-Equilibrium fuel Cycle Analysis of Fast reactors

SACER : Schedule Analysis and Cost EstimatoR for decommissioning

ARES : Advanced Risk assessment program considering Earthquake Scenario

TIERRA : Solution for Trigger list Items Export Risk assessment with Random sampling and AI

NIRAS : Nuclear Intelligence Retrieval and Analysis System