IP Library Granted Patent US 9,082,518
Granted Patent B2
US 9,082,518 · App. 13/672,189 · Granted Jul 14, 2015

Nuclear reactor vibration monitoring apparatus and method of monitoring nuclear reactor vibration

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Quick Facts
Patent No.
US 9,082,518
App. No.
13/672,189
Granted
Jul 14, 2015
Kind
B2
Abstract

Vibration of a jet pump installed in a reactor pressure vessel of a boiling water reactor is monitored. Ultrasonic waves are transmitted from an ultrasonic sensor installed on an outer surface of the reactor pressure vessel toward a throat and a diffuser of the jet pump. When the ultrasonic waves reach respective outer surfaces of the throat and diffuser, reflected waves are generated at the respective outer surfaces. The ultrasonic sensor receives those reflected waves. The ultrasonic signal process section obtains a distance in the horizontal direction between the throat and the diffuser based on a time difference of the reflected waves reflected from respective reflection surfaces of the throat and diffuser and a sound speed in reactor water in the neighborhood of the throat and diffuser. A relative vibration is obtained based on the change with time of the distance.

Claims (20)

1. A nuclear reactor vibration monitoring apparatus comprising:

an ultrasonic sensor set on an outer surface of a reactor pressure vessel, the ultrasonic sensor transmitting ultrasonic waves and receiving reflected echoes thereof;

an ultrasonic transmitter and receiver for controlling simultaneous transmission of the ultrasonic waves to each of a plurality of reactor internals undergoing relative vibration in the reactor pressure vessel and reception of respective reflected echoes from respective reflection surfaces of respective reactor internals; and

an ultrasonic signal process apparatus for processing respective reflected echoes and calculating said relative vibration of the respective reflection surfaces of the respective reactor internals based on time differences between the respective reflected echoes reflected from the respective reflection surfaces.

2. The nuclear reactor vibration monitoring apparatus according to claim 1 , wherein said ultrasonic signal process apparatus calculates the relative vibration by obtaining variations in distance between the reflection surfaces from detection time differences of the respective reflected echoes.

3. The nuclear reactor vibration monitoring apparatus according to claim 1 , wherein the ultrasonic signal process apparatus calculates vibration displacements of the reflection surfaces.

4. The nuclear reactor vibration monitoring apparatus according to claim 1 , wherein a range of recording time of the respective reflected echoes is decided based on waveforms of said respective reflected echoes.

5. The nuclear reactor vibration monitoring apparatus according to claim 1 , wherein the ultrasonic sensor transmits the ultrasonic waves as one pulse or as a plurality of continuous pulses.

6. The nuclear reactor vibration monitoring apparatus according to claim 1 , further comprising a reflection body installed on at least one of the reflection surfaces of said reactor internals.

7. The nuclear reactor vibration monitoring apparatus according to claim 1 , wherein said reactor internals are a throat and a diffuser of a jet pump, a wedge and a bracket of the jet pump, or the throat and the bracket of the jet pump.

8. A method of monitoring nuclear reactor vibration comprising:

simultaneously transmitting ultrasonic waves to each of a plurality of reactor internals undergoing relative vibration in a reactor pressure vessel from an ultrasonic sensor set on an outer surface of a reactor pressure vessel;

receiving each reflected echo from respective reflection surfaces of respective reactor internals to which the ultrasonic waves are transmitted; and

processing respective reflected echoes and calculating the relative vibration of the respective reflection surfaces of the respective reactor internals based on time differences between the respective reflected echoes reflected from the respective reflection surfaces.

9. The method of monitoring nuclear reactor vibration according to claim 8 , wherein calculating the relative vibration is performed based on a detected time difference of the respective reflected waves.

10. The method of monitoring nuclear reactor vibration according to claim 8 , further comprising calculating a vibration displacement of the reflection surfaces.

11. The method of monitoring nuclear reactor vibration according to claim 8 , further comprising deciding a range of recording time of the respective reflected echoes based on waveforms of the respective reflected echoes.

12. The method of monitoring nuclear reactor vibration according to claim 8 , wherein the ultrasonic waves are transmitted as one pulse or as a plurality of continuous pulses.

13. The method of monitoring nuclear reactor vibration according to claim 8 , wherein the reactor internals are a throat and a diffuser of a jet pump, a wedge and a bracket of the jet pump, or the throat and the bracket of the jet pump.

14. The method of monitoring nuclear reactor vibration according to claim 10 , comprising comparing an amplitude of the calculated relative vibration with a threshold value obtained by either a pre-analysis or evaluation at times of manufacture of the reactor internals, and determining either absence or presence of an abnormality.

Assignments (2)
CHANGE OF NAME Recorded Jan 5, 2026
From: HITACHI-GE NUCLEAR ENERGY, LTD.
To: HITACHI GE VERNOVA NUCLEAR ENERGY, LTD.
Reel/Frame 074188/0822 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2013
From: HIRATSUKA, MASAHIRO; BABA, ATSUSHI; KOIKE, MASAHIRO; IKEZUMI, TARO; OOTAKA, MINORU
To: HITACHI-GE NUCLEAR ENERGY, LTD.
Reel/Frame 029558/0935 →