Claims
- 1. A method for the identification of failed fuel assemblies in a nuclear reactor having a cover gas therein wherein multiple assembly failures can bne distinguished from single assembly failures comprising the steps of incorporating a blended mixture of inert, non-radioactive gas tags in each fuel pin of each of said fuel assemblies, said blended mixture of inert, non-radioactive gas tags having gas tag ratios that are located on a curved surface or a graphical tag ratio diagram and thereafter monitoring said cover gas for the presence of said blended mixture of said inert, non-radioactive gas tags.
- 2. The method of claim 1 wherein said curved surface on which said gas tag ratios are located comprises a warped sheet.
- 3. The method of claim 1 wherein said curved surface on which said gas tag ratios are located comprises mulltiple warped sheets.
- 4. The method of claim 1 wherein said blended mixture of inert, non-radioactive gas tags comprises ratios of .sup.78 Kr/.sup.80 Kr, .sup.82 Kr/.sup.80 Kr and .sup.126 Xe/.sup.129 Xe, said ratios being selected from the equation
- r.sub.x.sbsb.i /r.sub.x.sbsb.l =(s.sub.x).sup.i .sup.-.sup.1 , i= l to I,
- r.sub.y.sbsb.j /r.sub.y.sbsb.l = (s.sub.y).sup.J.sup.-.sup.1, j = 1 to J,
- where
- s.sub.x and s.sub.y are the tag ratio spacing factors for the x- and y-directions, respectively
- and specifying that
- r.sub.z.sbsb.i.sbsb.j /r.sub.z.sbsb.l.sbsb.l = (s.sub.z).sup.z.sbsp.i.sbsp.j,
- where
- s.sub.z is the tag ratio spacing factor in the z-direction and ##EQU3## for each value of r.sub.x.sbsb.i and r.sub.y.sbsb.j calculated above and where
- R.sub.1 is the radius of curvature about the y-axis and R.sub.2 is the radius of curvature about the x-axis for the gas ratios originally lying in the xy- plane; and
- specifying the constraints
- R.sub.1 .gtoreq. I - 1, R.sub.2 .gtoreq. J - l.
- 5. The method of claim 1 wherein said curved surface on which said gas tag ratios are located comprises a sphere.
- 6. The method of claim 1 wherein said curved surface on which said gas tag ratios are located comprises a hemisphere.
- 7. The method of claim 1 wherein said curved surface on which said gas tag ratios are located comprise a spherical octant.
- 8. The method of claim 1 wherein said blended mixture of inert, non-radioactive gas tags comprises approximately 2 atm. cm.sup.3 per fuel pin.
- 9. The method of claim 1 wherein said nuclear reactor comprises a liquid sodium fast breeder reactor, said cover gas comprises argon, said blended mixture of inert, non-radioactive gas tags comprises ratios of .sup.78 Kr/.sup.80 Kr, .sup.82 Kr/.sup.80 Kr and .sup.126 Xe/.sup.129 Xe and said monitoring step is conducted by sampling said cover gas, separating said Kr,Xe isotopes from the bulk of said cover gas and passing the resultant separated Kr and Xe isotopes through a mass spectrometer.
- 10. In a method for selecting gas tags for a nuclear reactor having a cover gas therein, the improvement comprising incorporating a blended mixture of inert, non-radioactive gas tags in each fuel pin of each fuel assembly, said blended mixture of inert, non-radioactive gas tags having gas tag ratios that are located on a curved surface on a graphical tag ratio diagram thereby enabling the gas tag ratios corresponding to a failure of a single fuel assembly to be distinguished from multiple assembly failures.
- 11. The method of claim 10 wherein said gas tags comprise 80 unique ratios of blended mixtures of .sup.78 Kr/.sup.80 Kr, .sup.82 Kr/.sup.80 Kr and .sup.126 Xe/.sup.129 Xe having the tag ratio factors given in Table I for the warped sheet.
- 12. The method of claim 11 wherein said blended mixture has the tag ratio factors given in Table II for the sphere.
- 13. The method of claim 11 wherein said blended mixture has the tag ratio factors given in Table III for the hemisphere.
- 14. The method of claim 10 wherein said blended mixture of inert, non-radioaoctive gas tags comprises approximately 2 atm. cm.sup.3 per fuel pin.
- 15. The method of claim 10 wherein gas tag ratios of said blended mixture of inert, non-radioactive gas tags comprise unequal tag ratio spacing in one or more of three independent gas tag ratios to thereby introduce a curve surface on which to locate the gas tag ratios in a three dimensional tag ratio space.
- 16. A method for identification of failed fuel assemblies in a nuclear reactor having a cover gas therein wherein multiple assembly failures can be distinguished from single assembly failures comprising the steps of incorporating a blended mixture of inert, non-radioactive gas tags in each fuel pin of each of said fuel assemblies, said blended mixture of inert, non-radioactive gas tags having gas tag ratios that are located on a plane surface with tag ratios systematically shifted with respect to the initial positions on a Cartesian grid to lie along curved lines and thereafter monitoring said cover gas for the presence of said blended mixture of said inert, non-radioactive gas tags.
Government Interests
The invention described herein was made in the course of, or under, a contract with the United States Atomic Energy Commission.
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|
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Non-Patent Literature Citations (1)
Entry |
McCormack et al., Gas Tag Identification of Failed Fuel - I. Synergistic Use of Inert Gases, Nuclear Technology, Vol. 24, Nov. 1974, p. 149. |