Utanohara et al., 2011 - Google Patents
Numerical simulation using CFD software of countercurrent gas–liquid flow in a PWR hot leg under reflux condensationUtanohara et al., 2011
View PDF- Document ID
- 6021723265096537746
- Author
- Utanohara Y
- Kinoshita I
- Murase M
- Minami N
- Nariai T
- Tomiyama A
- Publication year
- Publication venue
- Nuclear Engineering and Design
External Links
Snippet
In order to improve the countercurrent flow model of a transient analysis code, countercurrent air–water tests were previously conducted using a 1/15 scale model of the PWR hot leg and numerical simulations of the tests were carried out using the two-fluid …
- 239000007788 liquid 0 title description 24
Classifications
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F17/00—Digital computing or data processing equipment or methods, specially adapted for specific functions
- G06F17/50—Computer-aided design
- G06F17/5009—Computer-aided design using simulation
- G06F17/5018—Computer-aided design using simulation using finite difference methods or finite element methods
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRICAL DIGITAL DATA PROCESSING
- G06F17/00—Digital computing or data processing equipment or methods, specially adapted for specific functions
- G06F17/20—Handling natural language data
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Končar et al. | CFD simulation of convective flow boiling of refrigerant in a vertical annulus | |
Schlegel et al. | Experimental study of two-phase flow structure in large diameter pipes | |
Yang et al. | Measurement and modeling of two-phase flow parameters in scaled 8× 8 BWR rod bundle | |
Oh et al. | Effect of noncondensable gas in a vertical tube condenser | |
Schlegel et al. | Development of a comprehensive set of drift-flux constitutive models for pipes of various hydraulic diameters | |
Utanohara et al. | Numerical simulation using CFD software of countercurrent gas–liquid flow in a PWR hot leg under reflux condensation | |
Talebi et al. | A numerical technique for analysis of transient two-phase flow in a vertical tube using the Drift Flux Model | |
Yu et al. | Development and validation of boron diffusion model in nuclear reactor core subchannel analysis | |
Hibiki et al. | Constitutive equations for vertical upward two-phase flow in rod bundle | |
US6434495B1 (en) | Two-phase heat-flow analyzing method and the apparatus thereof | |
Le et al. | Investigation of the equalization capability of submerged perforated sheets under thermal–hydraulic conditions of a horizontal steam generator | |
Fontalvo et al. | Assessment of closure relations on the numerical predictions of vertical annular flows with the two-fluid model | |
Lee et al. | Improvement of CUPID code for simulating filmwise steam condensation in the presence of noncondensable gases | |
Bae et al. | Analysis of subcooled boiling flow with one-group interfacial area transport equation and bubble lift-off model | |
Pezo et al. | A two-dimensional model of the kettle reboiler shell side thermal-hydraulics | |
Vallée et al. | Comparison of countercurrent flow limitation experiments performed in two different models of the hot leg of a pressurized water reactor with rectangular cross section | |
Yu et al. | Flow characteristics of dispersed two-phase flows in an 8× 8 rod bundle | |
Schaffrath et al. | Validation of the CFD code fluent by post-test calculation of a density-driven ROCOM experiment | |
Lee et al. | Numerical study for CANDU moderator temperature prediction by using the two-phase flow analysis code, CUPID | |
Alatrash et al. | Investigation of subcooled boiling wall closures at high pressure using a two-phase CFD code | |
Utanohara et al. | Numerical simulations for steam–water CCFL tests using the 1/3 scale rectangular channel simulating a PWR hot leg | |
Liu et al. | Validation of the STEG code using experiments on two-phase flow across horizontal tube bundles | |
Yoon et al. | Development of a CFD model for the CANDU-6 moderator analysis using a coupled solver | |
Ma et al. | Experimental study on the effect of diameter on gas–liquid CCFL characteristics of horizontal circular pipes | |
Murase et al. | VOF simulations of countercurrent gas-liquid flow in a PWR hot leg |