NUCLEAR RADIATION DOSIMETER USING STRESS INDUCED BIREFRINGENCE CHANGES IN FIBER OPTIC CABLES
The present invention relates to devices and methods for measuring neutron fluence at a pre-selected location which is positioned in a nuclear power plant. The devices and methods include passing neutrons through a fiber optic cable. The fiber optic cable has disposed therein a neutron sensitive material which is capable of absorbing the neutrons to produce a gas. The gas results in a build-up of pressure in the fiber optic cable which causes a change in the optical stress birefringence pattern. This change is measured and used to determine the amount of gas in the fiber optic cable, the number of neutrons absorbed by the neutron sensitive material and subsequently, the neutron fluence at the pre-selected location. In particular, the devices and methods of the invention are effective without the need to employ a radioactive material.
1 . A method for measuring neutron fluence at a pre-selected location in a nuclear power plant, comprising:
obtaining a fiber optic cable having an outer cylindrical surface and an inner cavity, the inner cavity having one or more cores formed therein;
passing one or more neutrons through the fiber optic cable;
substantially uniformly introducing a neutron sensitive material into the one or more cores;
absorbing the one or more neutrons in the neutron sensitive material;
producing a gas selected from the group consisting of hydrogen, helium and mixtures thereof from the interaction of the one or more neutrons with the neutron sensitive material;
obtaining a first optical stress birefringence pattern of the fiber optic cable prior to being positioned in the pre-selected location;
obtaining a second optical stress birefringence pattern of the fiber optic cable after being positioned in the pre-selected location;
measuring a change in the first and second optical stress birefringence patterns, the change being produced from pressure build-up of the gas in the fiber optic cable; and
determining an amount of the gas in the one or more cavities and the number of neutrons absorbed by the neutron sensitive material to determine the total neutron exposure in the location.
2 . The method of claim 1 , wherein the measuring is conducted by an optical measuring tool.