Javascript must be enabled to continue!
Fluid-Structure Interaction Numerical Analysis of the Spent Fuel Pool and Storage Racks Under Earthquake
View through CrossRef
Spent fuel pool and storage racks are important nuclear security structures and components. In order to prevent it from structural failure, which includes the loss of the structural integrity of the spent fuel pool and stability of the spent fuel storage racks, also includes the possibility of fallen down of storage racks under seismic loading. Besides the necessary static analysis of structures, the influence of seismic loading on the interaction between water and structure should be fully considered, Especially concerned the analysis of the shaking effect of water sloshing on the storage racks, the displacement and the possibility of fallen down of the storage racks.
The present paper is concerned with the problem of modeling the fluid-structure interaction (FSI) in filled liquid and filled with spent fuel pool. The study focuses on the sloshing phenomena and on the coupling computational fluid dynamic (CFD) analysis with the finite element stress analysis (FEA) code LS-DYNA. By the results of the response of seismic, such as the displacement of the storage racks, pressure exerted on the plate of racks and the walls of the pool. This paper also evaluates the seismic performance of the structure and the safety margin.
Various numerical methods can be used for analysis of liquid storage pools, among these we mention explicit finite element, implicit Lagrangian-Eulerian, hybrid finite element, Smoothed Particle Hydrodynamics volume of fluid. In this article the coupled sloshing dynamics in a rectangle pool were studied using a model developed in LS-DYNA environment. The main solution methodology is based on explicit time integration. In order to demonstrate the FSI results of the FEA models of the spent fuel pool on seismic analysis, a 3D FEA models were developed. The Finite element model composed of the spent fuel pool (steel plate concrete), spent fuel storage racks, cushion block, water and air. Solid element modeling is used in concrete, cushion block, water and air. Steel plate and storage racks employ the shell element. The constitutive model of solid element is linear elastic. And the constitutive model of fluid element is described by the Gruneisen equation. Arbitrary Lagrangian-Eulerian (ALE) formulation is thought of as algorithms that perform automatic rezoning. It realized the advection of water and air in the ALE multi-material group.
American Society of Mechanical Engineers
Title: Fluid-Structure Interaction Numerical Analysis of the Spent Fuel Pool and Storage Racks Under Earthquake
Description:
Spent fuel pool and storage racks are important nuclear security structures and components.
In order to prevent it from structural failure, which includes the loss of the structural integrity of the spent fuel pool and stability of the spent fuel storage racks, also includes the possibility of fallen down of storage racks under seismic loading.
Besides the necessary static analysis of structures, the influence of seismic loading on the interaction between water and structure should be fully considered, Especially concerned the analysis of the shaking effect of water sloshing on the storage racks, the displacement and the possibility of fallen down of the storage racks.
The present paper is concerned with the problem of modeling the fluid-structure interaction (FSI) in filled liquid and filled with spent fuel pool.
The study focuses on the sloshing phenomena and on the coupling computational fluid dynamic (CFD) analysis with the finite element stress analysis (FEA) code LS-DYNA.
By the results of the response of seismic, such as the displacement of the storage racks, pressure exerted on the plate of racks and the walls of the pool.
This paper also evaluates the seismic performance of the structure and the safety margin.
Various numerical methods can be used for analysis of liquid storage pools, among these we mention explicit finite element, implicit Lagrangian-Eulerian, hybrid finite element, Smoothed Particle Hydrodynamics volume of fluid.
In this article the coupled sloshing dynamics in a rectangle pool were studied using a model developed in LS-DYNA environment.
The main solution methodology is based on explicit time integration.
In order to demonstrate the FSI results of the FEA models of the spent fuel pool on seismic analysis, a 3D FEA models were developed.
The Finite element model composed of the spent fuel pool (steel plate concrete), spent fuel storage racks, cushion block, water and air.
Solid element modeling is used in concrete, cushion block, water and air.
Steel plate and storage racks employ the shell element.
The constitutive model of solid element is linear elastic.
And the constitutive model of fluid element is described by the Gruneisen equation.
Arbitrary Lagrangian-Eulerian (ALE) formulation is thought of as algorithms that perform automatic rezoning.
It realized the advection of water and air in the ALE multi-material group.
Related Results
Laboratory Research on Hydraulic Losses on SHP Inlet Channel Trash Racks
Laboratory Research on Hydraulic Losses on SHP Inlet Channel Trash Racks
There is currently a growing trend towards renewable energy sources, which are characterised by a guaranteed power supply and low failure rate. Hydropower plants (small or large) a...
Analisis Perbandingan Fuel Consumtption Pada Pesawat boeing B737-800 Rute CGK-DMK dan CGK-AMQ
Analisis Perbandingan Fuel Consumtption Pada Pesawat boeing B737-800 Rute CGK-DMK dan CGK-AMQ
Fuel consumption merupakan perhitungan konsumsi bahan bakaryang digunakan pesawat udara melalui dua engine, perhitungan ini akan mengetahui banyaknya fuel yang digunakan oleh pesaw...
Spent Fuel Pool Risk Analysis for a CPR1000 Unit
Spent Fuel Pool Risk Analysis for a CPR1000 Unit
Abstract
After the Fukushima nuclear accident, the safety level of the spent fuel pool has gradually attracted increasing attention. This paper develops a probabilis...
The Adventitious-Pin-Failure Study Under a Slow Power Ramp
The Adventitious-Pin-Failure Study Under a Slow Power Ramp
In a fast breeder reactor, a slow power ramp accident could lead to a local melting of the fuel depending on design and assumptions. If we assume cladding failure in addition to th...
Measurement of Atmospheric Sea Salt Concentration in the Dry Storage Facility of the Spent Nuclear Fuel
Measurement of Atmospheric Sea Salt Concentration in the Dry Storage Facility of the Spent Nuclear Fuel
Spent nuclear fuel coming from a Japanese nuclear power plant is stored in the interim storage facility before reprocessing. There are two types of the storage methods which are we...
Thyroid Gland and Male Reproductive Anomalies Among Fuel Handlers in Gampaha District, Sri Lanka
Thyroid Gland and Male Reproductive Anomalies Among Fuel Handlers in Gampaha District, Sri Lanka
Abstract
Introduction:Fuel handlers at petrol stations are continuously exposed to organic solvents from fuel and vehicle emissions. Endocrine disrupting chemicals (...
Analysis of maxillofacial fracture victims in the Wenchuan earthquake and Yushu earthquake
Analysis of maxillofacial fracture victims in the Wenchuan earthquake and Yushu earthquake
Abstract – Objective: To analyze retrospectively 419 patients after the Wenchuan earthquake and 46 after Yushu earthquake with maxillofacial fractures so as to provide reference o...
Interpretation and Analysis of Design Idea of the Spent Fuel Transport Ship
Interpretation and Analysis of Design Idea of the Spent Fuel Transport Ship
Abstract
With the rapid growth of China’s nuclear power scale, in order to meet the future demand for spent fuel transport, relying on a single road transport mode i...

