IP Library Patent Application 17731003
Patent Application
App. No. 17/731,003

SPACE NUCLEAR PROPULSION REACTOR AFT PLENUM ASSEMBLY

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Quick Facts
Patent No.
US None
App. No.
17/731,003
Abstract

An aft plenum assembly for use with a nuclear thermal reactor including a pressure vessel and a nozzle assembly having a top plenum plate disposed within the pressure vessel, the top plenum plate defining a first plurality of fuel flow apertures, a bottom plenum plate disposed within the pressure vessel, the bottom plenum plate being parallel to the top plenum plate thereby defining a plenum space therebetween, the bottom plenum plate defining a second plurality of fuel flow apertures, and a plurality of tubular connections extending between the first plurality of fuel flow apertures of the top plenum plate and the second plurality of fuel flow apertures of the bottom plenum plate, wherein the aft plenum assembly is disposed between the pressure vessel and the nozzle assembly.

Claims (30)

1 . An aft plenum assembly for use with a nuclear thermal reactor including a pressure vessel and a nozzle assembly, comprising:

a top plenum plate disposed within the pressure vessel, the top plenum plate defining a first plurality of fuel flow apertures;

a bottom plenum plate disposed within the pressure vessel, the bottom plenum plate being parallel to the top plenum plate thereby defining a plenum space therebetween, the bottom plenum plate defining a second plurality of fuel flow apertures; and

a plurality of tubular connections extending between the first plurality of fuel flow apertures of the top plenum plate and the second plurality of fuel flow apertures of the bottom plenum plate,

wherein the aft plenum assembly is disposed between the pressure vessel and the nozzle assembly.

2 . The aft plenum assembly of claim 1 , wherein the plenum space is in fluid communication with the moderator assemblies disposed within the pressure vessel.

3 . The aft plenum assembly of claim 2 , wherein top plenum plate defines a plurality of coolant flow apertures therein.

4 . The aft plenum assembly of claim 3 , further comprising a flow distribution ring having a cylindrical side wall, wherein the flow distribution ring extends between the top and the bottom plenum plates so that the plurality of tubular connections is encircled by the cylindrical side wall.

5 . The aft plenum assembly of claim 4 , wherein a portion of the cylindrical side wall of the flow distribution ring is perforated.

6 . The aft plenum assembly of claim 5 , further comprising a flow adapter plate defining a central aperture therein, wherein the flow adapter plate is disposed between the top and the bottom plenum plates so that the flow adapter plate is parallel to both the top and the bottom plenum plates, and at least one tubular connection extends through the central aperture of the flow adapter plate.

7 . The aft plenum assembly of claim 5 , wherein the flow distribution ring includes a top side wall portion disposed above the flow adapter plate and a bottom side wall portion disposed below the flow adapter plate, and the bottom side wall portion is the portion of the cylindrical side wall that is perforated.

8 . The aft plenum assembly of claim 3 , the bottom plenum plate further comprising a first plurality of blind bores and a second plurality of blind bores extending downwardly from a top surface thereof, and a plurality of radially-inwardly depending internal channels defined within the bottom plenum plate, wherein the first plurality of blind bores is disposed externally to the flow distribution ring, the second plurality of blind bores are disposed internally of the flow distribution ring, and the first and the second pluralities of blind bores are in fluid communication with the internal channels.

9 . The aft plenum assembly of claim 3 , wherein the reactor core is supported on the top aft plenum assembly.

10 . The aft plenum assembly of claim 1 , further comprising a thermal shield formed by a shield plate disposed parallel to a bottom surface of the bottom plenum plate so that a gap is disposed therebetween.

11 . A nuclear thermal reactor comprising:

a reactor pressure vessel defining an interior volume;

a reactor core including a plurality of fuel assemblies and moderator assemblies, the reactor core being disposed within the interior volume of the reactor pressure vessel; and

an aft plenum assembly comprising:

a top plenum plate disposed within the pressure vessel, the top plenum plate defining a first plurality of fuel flow apertures;

a bottom plenum plate disposed within the pressure vessel, the bottom plenum plate being parallel to the top plenum plate thereby defining a plenum space therebetween, the bottom plenum plate defining a second plurality of fuel flow apertures; and

a plurality of tubular connections extending between the first plurality of fuel flow apertures of the top plenum plate and the second plurality of fuel flow apertures of the bottom plenum plate,

wherein the aft plenum assembly is disposed between the pressure vessel and the nozzle assembly, and the reactor core is supported on the aft plenum assembly.

12 . The nuclear thermal reactor of claim 11 , wherein the plenum space is in fluid communication with the moderator assemblies of the reactor core.

13 . The nuclear thermal reactor of claim 12 , wherein top plenum plate defines a plurality of coolant flow apertures therein.

14 . The nuclear thermal reactor of claim 13 , further comprising a flow distribution ring having a cylindrical side wall, wherein the flow distribution ring extends between the top and the bottom plenum plates so that the plurality of tubular connections is encircled by the cylindrical side wall.

15 . The nuclear thermal reactor of claim 14 , wherein a portion of the cylindrical side wall of the flow distribution ring is perforated.

16 . The nuclear thermal reactor of claim 15 , further comprising a flow adapter plate defining a central aperture therein, wherein the flow adapter plate is disposed between the top and the bottom plenum plates so that the flow adapter plate is parallel to both the top and the bottom plenum plates, and at least one tubular connection extends through the central aperture of the flow adapter plate.

17 . The nuclear thermal reactor of claim 15 , wherein the flow distribution ring includes a top side wall portion disposed above the flow adapter plate and a bottom side wall portion disposed below the flow adapter plate, and the bottom side wall portion is the portion of the cylindrical side wall that is perforated.

18 . The nuclear thermal reactor of claim 13 , the bottom plenum plate further comprising a first plurality of blind bores and a second plurality of blind bores extending downwardly from a top surface thereof, and a plurality of radially-inwardly depending internal channels defined within the bottom plenum plate, wherein the first plurality of blind bores is disposed externally to the flow distribution ring, the second plurality of blind bores are disposed internally of the flow distribution ring, and the first and the second pluralities of blind bores are in fluid communication with the internal channels.

19 . The nuclear thermal reactor of claim 11 , further comprising a thermal shield formed by a shield plate disposed parallel to a bottom surface of the bottom plenum plate so that a gap is disposed therebetween.

Assignments (3)
SECURITY INTEREST Recorded Nov 10, 2025
From: BWXT ADVANCED TECHNOLOGIES LLC; BWXT ISOTOPE TECHNOLOGY GROUP, INC.; BWXT NUCLEAR ENERGY, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 073531/0358 →
CONFIRMATORY LICENSE Recorded Mar 12, 2024
From: BWXT NUCLEAR ENERGY, INC.
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 066793/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2023
From: ALES, MATHEW W.; FLEMING, EMILY D.; THOME, TED L.
To: BWXT NUCLEAR ENERGY INC,
Reel/Frame 064847/0853 →