Published August 2008 | Version v1
Journal article

Analysis of ultrasound propagation in high-temperature nuclear reactor feedwater to investigate a clamp-on ultrasonic pulse doppler flowmeter

  • 1. Tokyo Electric Power Co., Inc., Yokohama, Kanagawa (Japan)
  • 2. Tokyo Inst. of Technology, Research Laboratory for Nuclear Reactors, Tokyo (JP)
  • 3. ITOCHU Techno-Solutions Corp., Tokyo (JP)

Description

The flow rate of nuclear reactor feedwater is an important factor in the operation of a nuclear power reactor. Venturi nozzles are widely used to measure the flow rate. Other types of flowmeters have been proposed to improve measurement accuracy and permit the flow rate and reactor power to be increased. The ultrasonic pulse Doppler system is expected to be a candidate method because it can measure the flow profile across the pipe cross section, which changes with time. For accurate estimation of the flow velocity, the incidence angle of ultrasound entering the fluid should be estimated using Snell's law. However, evaluation of the ultrasound propagation is not straightforward, especially for a high-temperature pipe with a clamp-on ultrasonic Doppler flowmeter. The ultrasound beam path may differ from what is expected from Snell's law due to the temperature gradient in the wedge and variation in the acoustic impedance between interfaces. Recently, simulation code for ultrasound propagation has come into use in the nuclear field for nondestructive testing. This article analyzes and discusses ultrasound propagation, using 3D-FEM simulation code plus the Kirchhoff method, as it relates to flow profile measurement in nuclear reactor feedwater with the ultrasonic pulse Doppler system. (author)

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Nuclear Science and Technology (Tokyo)
Journal Volume
45
Journal Issue
8
Journal Page Range
p. 752-762
ISSN
0022-3131

Optional Information

Notes
Available from doi: http://dx.doi.org/10.3327/jnst.45.752; 27 refs., 21 figs., 2 tabs.