1967•Unpublished venueOpen access

DESIGN AND FABRICATION OF MARK IV SUPERHEAT FUEL FOR EVESR FUEL DEVELOPMENT PROGRAM.

General Electric Co., Sunnyvale, Calif. Advanced Products Operation, V. Hazel, D. Ikeuye, E. Lees, T.B. Murdock, C.N. Spalaris

Open full text 0 citations

Abstract

3-1 3-2 Mode of Attack in Boiling CuCl2 3-3 4-1 Mark IV High Performance F\1el Design Variables 4-3 4-2 Calculated Fission Gas Release 4-7 4-3 Calculated Inter!'lal Pressure Stresses 4-12 4-4 Radial Gradient Thermal Stresses 4-12 5-1 Fuel Rod Characteristics 5-2 5-2 Fuel Rod Characteristics 5-3 5-:i Chemical Properties ~f uo 2 Fuel {SH} 5-4 5-4 Chemical Analysis of Hardware Material (SH) 5-7 5-5 Mechanical Properties of Hardware Materials (SH) 5-9 5-6 Pre-Irradiation Diameter Measurements (SH) 5-17 5-7 Pre-Irradiation Diameter Measurements (SH) 5-18 .. 5-8 Pre-Irradiation Length Measurements {SH) 5-19 5-9 Profilometer Measurements (SH) 5-20 ,~•.5-10 Stress Rupture Test at 1350° F 5-24 7-1 Mark IV Fuel Bundles -Assembly Data 7-31 7-2 Mark IV Superheat Fuel Parameters -Reference Design Conditions 7-33 7-3 Mark IV Fuel Performance -Reference Design 7-36 7-4 Mark IV Fuel Parameters For Turbulence Promoter Study 7-42 7-5 Multipliers for Heat Transfer and Friction Coefficients for Turbulence Promoters 7-42 8-1 Axial Power Distributions Midlife 8-13 8-2 Peak Specific Power Versus Control Rod

About this research paper

What this paper is about

3-1 3-2 Mode of Attack in Boiling CuCl2 3-3 4-1 Mark IV High Performance F\1el Design Variables 4-3 4-2 Calculated Fission Gas Release 4-7 4-3 Calculated Inter!'lal Pressure Stresses 4-12 4-4 Radial Gradient Thermal Stresses 4-12 5-1 Fuel Rod Characteristics 5-2 5-2 Fuel Rod Characteristics 5-3 5-:i Chemical Properties ~f uo 2 Fuel {SH} 5-4 5-4 Chemical Analysis of Hardware Material (SH) 5-7 5-5 Mechanical Properties of Hardware Materials (SH) 5-9 5-6 Pre-Irradiation Diameter Measurements (SH) 5-17 5-7 Pre-Irradiation Diameter Measurements (SH) 5-18 .. 5-8 Pre-Irradiation Length Measurements {SH) 5-19 5-9 Profilometer Measurements (SH) 5-20 ,~•.5-10 Stress Rupture Test at 1350° F 5-24 7-1 Mark IV Fuel Bundles -Assembly Data 7-31 7-2 Mark IV Superheat Fuel Parameters -Reference Design Conditions 7-33 7-3 Mark IV Fuel Performance -Reference Design 7-36 7-4 Mark IV Fuel Parameters For Turbulence Promoter Study 7-42 7-5 Multipliers for Heat Transfer and Friction Coefficients for Turbulence Promoters 7-42 8-1 Axial Power Distributions Midlife 8-13 8-2 Peak Specific Power Versus Control Rod

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

3-1 3-2 Mode of Attack in Boiling CuCl2 3-3 4-1 Mark IV High Performance F\1el Design Variables 4-3 4-2 Calculated Fission Gas Release 4-7 4-3 Calculated Inter!'lal Pressure Stresses 4-12 4-4 Radial Gradient Thermal Stresses 4-12 5-1 Fuel Rod Characteristics 5-2 5-2 Fuel Rod Characteristics 5-3 5-:i Chemical Properties ~f uo 2 Fuel {SH} 5-4 5-4 Chemical Analysis of Hardware Material (SH) 5-7 5-5 Mechanical Properties of Hardware Materials (SH) 5-9 5-6 Pre-Irradiation Diameter Measurements (SH) 5-17 5-7 Pre-Irradiation Diameter Measurements (SH) 5-18 .. 5-8 Pre-Irradiation Length Measurements {SH) 5-19 5-9 Profilometer Measurements (SH) 5-20 ,~•.5-10 Stress Rupture Test at 1350° F 5-24 7-1 Mark IV Fuel Bundles -Assembly Data 7-31 7-2 Mark IV Superheat Fuel Parameters -Reference Design Conditions 7-33 7-3 Mark IV Fuel Performance -Reference Design 7-36 7-4 Mark IV Fuel Parameters For Turbulence Promoter Study 7-42 7-5 Multipliers for Heat Transfer and Friction Coefficients for Turbulence Promoters 7-42 8-1 Axial Power Distributions Midlife 8-13 8-2 Peak Specific Power Versus Control Rod

Key concepts: Fabrication, Superheating, Engineering, Materials science, Environmental science, Manufacturing engineering, Physics, Thermodynamics

Related papers

Back to paper searchBrowse research topicsOriginal source
DESIGN AND FABRICATION OF MARK IV SUPERHEAT FUEL FOR EVESR FUEL DEVELOPMENT PROGRAM. — Research Paper | ScholarLens