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Simulation Analysis of Loss of Coolant Accidents Based on CNIFA Program
by
Tian, Haijing
, Huang, Xiaoyun
, Tian, Haiman
in
Complexity
/ Containment vessels
/ Design analysis
/ Emergency response
/ flood simulation
/ Fluid flow
/ Heat pipes
/ loss of coolant accident
/ Loss of coolant accidents
/ Nuclear power plant
/ Nuclear power plants
/ Nuclear reactor containment
/ Nuclear safety
/ Simulation
/ Water level fluctuations
/ Water levels
2024
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Simulation Analysis of Loss of Coolant Accidents Based on CNIFA Program
by
Tian, Haijing
, Huang, Xiaoyun
, Tian, Haiman
in
Complexity
/ Containment vessels
/ Design analysis
/ Emergency response
/ flood simulation
/ Fluid flow
/ Heat pipes
/ loss of coolant accident
/ Loss of coolant accidents
/ Nuclear power plant
/ Nuclear power plants
/ Nuclear reactor containment
/ Nuclear safety
/ Simulation
/ Water level fluctuations
/ Water levels
2024
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Do you wish to request the book?
Simulation Analysis of Loss of Coolant Accidents Based on CNIFA Program
by
Tian, Haijing
, Huang, Xiaoyun
, Tian, Haiman
in
Complexity
/ Containment vessels
/ Design analysis
/ Emergency response
/ flood simulation
/ Fluid flow
/ Heat pipes
/ loss of coolant accident
/ Loss of coolant accidents
/ Nuclear power plant
/ Nuclear power plants
/ Nuclear reactor containment
/ Nuclear safety
/ Simulation
/ Water level fluctuations
/ Water levels
2024
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Simulation Analysis of Loss of Coolant Accidents Based on CNIFA Program
Journal Article
Simulation Analysis of Loss of Coolant Accidents Based on CNIFA Program
2024
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Overview
The loss of coolant accident in the primary pipeline of a reactor is a typical accident in the safety analysis of nuclear power plants, and it is one of the accidents with a high probability of occurrence. Due to the extremely complex structure of the lower space of the containment vessel, it increases the complexity of fluid flow during a loss of coolant accident. This article is based on the internal water flooding analysis simulation software CNIFA of a nuclear power plant to simulate the water flooding of a rupture in the main pipeline heat pipe section of a power plant, and to conduct a comprehensive water flooding scenario simulation for this working condition. The quantitative information collected during the simulation process, including dynamically displayed water volume, water level, and their changes over time, facilitate emergency response personnel to choose the correct response plan in advance, it can also provide more accurate basis for various specialties in design analysis.
Publisher
IOP Publishing
Subject
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