Claims
- 1. An integrated head assembly for a nuclear reactor having a reactor vessel closure head with a plurality of lifting lugs wherein the reactor vessel closure head supports a plurality of control rod drive mechanisms, the integrated head assembly comprising:
a plurality of lift rods that extend upwardly from the reactor vessel closure head, each lift rod adapted to engage one of the lifting lugs; a lower ring beam supported by the reactor vessel closure head; a shroud assembly supported by the lower ring beam, the shroud assembly comprising a support structure and a plurality of ducts, each duct having an inlet disposed near the reactor vessel closure head and an outlet disposed distally from the inlet; a seismic support assembly that engages the control rod drive mechanisms and is attached to the shroud assembly; a missile shield assembly attached to the shroud assembly and disposed above the control rod drive mechanisms; and a plurality of fans, wherein each fan is fluidly connected to the outlet of at least one of the plurality of ducts.
- 2. The integrated head assembly of claim 1, wherein the lower ring beam comprises at least three annular segments, and further comprising connecting members that connect the ring beam segments to the reactor vessel closure head lifting lugs.
- 3. The integrated head assembly of claim 1, wherein the plurality of lift rods comprise three lift rods, and further comprising a lifting tripod assembly and an upper ring beam disposed at an upper end of the lift rods wherein the lifting tripod is attached to the lift rods and the upper ring beam acts as a spreader for the lifting tripod.
- 4. The integrated head assembly of claim 1, wherein the shroud assembly further comprises an outer wall, and the duct outlets comprise apertures in the shroud assembly outer wall.
- 5. The integrated head assembly of claim 4, wherein the plurality of fans attaches to the shroud assembly outer wall at the duct outlet apertures.
- 6. The integrated head assembly of claim 5, wherein the plurality of fans comprises three fans and the plurality of ducts comprises three ducts.
- 7. The integrated head assembly of claim 5, wherein the plurality of fans draw air upwardly through the ducts such that air is drawn into the shroud structure, over the control rod drive mechanisms, and upwardly through the plurality of ducts.
- 8. The integrated head assembly of claim 1, wherein the reactor vessel closure head comprises a plurality of upwardly extending flanges, and wherein the lower ring beam comprises an L-shaped lower portion that engages the reactor vessel closure head flanges.
- 9. The integrated head assembly of claim 1, wherein the missile shield assembly comprises an array of shield plates slidably disposed in a support structure above the control rod drive mechanisms.
- 10. The integrated head assembly of claim 9, wherein the array of shield plates comprises one shield plate associated with each control rod drive mechanism, and wherein each shield plate can be moved from a first position disposed directly over the associated control rod drive mechanism to a second position away from the associated control rod drive mechanism, thereby providing access to the associated control rod drive mechanism from above.
- 11. The integrated head assembly of claim 9, wherein the missile shield assembly support structure comprises a plurality of slotted beams that are adapted to slidably receive the shield plates.
- 12. The integrated head assembly of claim 11, wherein each of the shield plates further comprises at least one upwardly-extending handle to facilitate moving the shield plate.
- 13. An integrated head assembly for a nuclear reactor having a reactor vessel closure head with three lifting lugs, wherein the reactor vessel closure head supports a plurality of control rod drive mechanisms, the integrated head assembly comprising:
(a) a lifting assembly attached to the reactor vessel closure head lifting lugs, the lifting assembly comprising
i) a ring beam coaxially disposed on top of the reactor vessel closure head, ii) three lift rods, each lift rod having a proximal end comprising a connecting member that engages one of the lifting lugs and the ring beam, and a distal end, iii) a spreader plate having brackets adapted to attach to the lift rods, and iv) a lift tripod releasably attachable to the spreader plate brackets; (b) a support structure extending upwardly from the ring beam; (c) a shroud assembly attached to the support structure, the shroud assembly encircling the control rod drive mechanisms; (d) a baffle assembly attached to the support structure and disposed between the shroud assembly and the control rod drive mechanisms; (e) a control rod drive mechanism cooling system comprising a plurality of fans and a plurality of vertically extending ducts, the ducts each having an inlet disposed near the reactor vessel closure head and an outlet disposed above the inlet and fluidly connected to at least one of the fans; and (f) a missile shield assembly disposed above the control rod drive mechanisms.
- 14. The integrated head assembly of claim 13, wherein the spreader plate comprises an annular ring plate.
- 15. The integrated head assembly of claim 14, wherein the plurality of ducts is cooperatively defined by the baffle assembly and the shroud assembly.
- 16. The integrated head assembly of claim 13, wherein the ring beam further comprises an L-shaped lower portion adapted to engage the reactor vessel closure head.
- 17. The integrated head assembly of claim 14, wherein the cylindrical support structure comprises a plurality of vertical beam members that is attached to the ring beam, and a plurality of vertically spaced apart ring angles that interconnects the plurality of beam members.
- 18. The integrated head assembly of claim 14, wherein the duct outlets comprise apertures in the shroud assembly, and wherein the plurality of fans is attached to the shroud assembly at the duct outlets.
- 19. The integrated head assembly of claim 14, wherein the missile shield assembly comprises an array of shield plates slidably disposed in a support structure above the control rod drive mechanisms.
- 20. The integrated head assembly of claim 19, wherein the array of shield plates comprises one shield plate associated with each control rod drive mechanism, and wherein each shield plate can be moved from a first position disposed directly over the associated control rod drive mechanism to a second position away from the associated control rod drive mechanism, thereby providing access to the associated control rod drive mechanism from above.
- 21. The integrated head assembly of claim 19, wherein the missile shield assembly support structure comprises a plurality of slotted beams that is adapted to slidably receive the shield plates.
- 22. The integrated head assembly of claim 21, wherein each of the shield plates further comprises at least one upwardly-extending handle to facilitate moving the shield plate.
- 23. A method for retrofitting a pressurized water nuclear reactor with an integrated head assembly, the nuclear reactor of the type having a reactor vessel closure head having a plurality of lifting lugs wherein the reactor vessel closure head supports a plurality of control rod drive mechanisms, the method comprising:
shutting down the nuclear reactor; removing any existing control rod drive mechanism cooling systems, missile shields, and seismic support systems disposed above the reactor vessel closure head; installing a lift assembly on the reactor vessel closure head including a bottom ring beam and a plurality of lift rods wherein each lift rod attaches to one of the reactor vessel closure head lifting lugs; installing a shroud assembly on the bottom ring beam; installing a control rod drive mechanism seismic support system; and installing a control rod drive mechanism cooling system.
- 24. The method of claim 23, wherein the control rod drive mechanism cooling system comprises at least one vertical duct and at least one fan fluidly connected to the fluid ducts, and wherein the at least one fan is attached to an outer portion of the integrated head assembly such that the at least one fan is not disposed directly above any of the plurality of control rod drive mechanisms.
- 25. The method of claim 23, further comprising installing a missile shield to an upper portion of the support column assembly, wherein the missile shield comprises an array of removable missile shield plates, and wherein each missile shield plate is removably disposed above one control rod drive mechanism.
- 26. The method of claim 25, further comprising attaching a lift tripod to the lift assembly.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of prior U.S. patent application Ser. No. 09/921,363, filed Aug. 2, 2001, priority from the filing date of which is hereby claimed under 35 U.S.C. §120. This application also claims the benefit of U.S. Provisional Patent Application No. 60/311,328 filed Aug. 9, 2001, under 35 U.S.C. §119.
Provisional Applications (1)
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Number |
Date |
Country |
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60311328 |
Aug 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09921363 |
Aug 2001 |
US |
Child |
10012193 |
Dec 2001 |
US |