Method of constructing a nuclear reactor having reactor core and control elements supported by reactor vessel head
A nuclear reactor is designed to couple the load path of control elements with the reactor core, thus reducing opportunity for differential movement between the control elements and the reactor core. A core barrel can be fabricated in a manufacturing facility to include the reactor core, control element supports, and control element drive system. The core barrel can be mounted to a reactor vessel head. Movement, such as through seismic forces, transmits an equal direction and magnitude to the control elements and the reactor core, thus inhibiting the opportunity for differential movement.
1. A method of constructing a nuclear reactor comprising:
fabricating, in a manufacturing facility, a reactor vessel;
fabricating, in the manufacturing facility, a core barrel;
fabricating, in the manufacturing facility, a reactor core;
fabricating, in the manufacturing facility, a control element drive system;
assembling, in the manufacturing facility, the control element drive system and the reactor core within the core barrel to create a core module;
shipping the core module to a construction site;
fabricating, in a manufacturing facility, a vessel head configured to be mounted to an upper end of the reactor vessel;
assembling the vessel head with a control element support structure,
wherein the control element support structure is mounted to the reactor vessel head,
wherein the control element support structure is configured to carry one or more control elements; and
assembling the core barrel to the control element support structure,
wherein the core barrel hangs from the control element support structure,
wherein the control element support structure is configured to support weight of each of the one or more control elements, the core barrel, and the reactor core.
2. The method of constructing a nuclear reactor as in claim 1 , further comprising shipping the reactor vessel to the construction site.
3. The method of constructing a nuclear reactor as in claim 2 , further comprising installing the reactor vessel in a reactor building.
4. The method of constructing a nuclear reactor as in claim 3 , further comprising placing the core module inside the reactor vessel.
5. The method of constructing a nuclear reactor as in claim 4 , further comprising coupling the core module to a first portion of the reactor vessel head.
6. The method of constructing a nuclear reactor as in claim 5 , further comprising coupling the control element drive system to the first portion of the reactor vessel head.
7. The method of constructing a nuclear reactor as in claim 1 , wherein fabricating the core barrel comprises forming the core barrel as a cylinder.
8. The method of constructing a nuclear reactor as in claim 7 , wherein the core barrel is configured to receive the reactor core and support the weight of the reactor core.
9. The method of constructing a nuclear reactor as in claim 1 , further comprising constructing a below core support structure configured to link the core barrel to a lower portion of the reactor vessel and limit relative motion between the core barrel and the reactor vessel.
10. The method of constructing a nuclear reactor as in claim 1 , wherein the control element drive system is configured to be inserted into the core barrel and supported by the core barrel.