Published February 2017 | Version v1
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Verification of alternative dew point hygrometer for CV-LRT in MONJU

  • 1. Japan Atomic Energy Agency, Sector of Fast Reactor Research and Development, Prototype Fast Breeder Reactor Monju, Tsuruga, Fukui (Japan)
  • 2. Mitsubishi Heavy Industries, Ltd., Tokyo (Japan)
  • 3. National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki (Japan)

Description

To reduce the influence of maintenance of dew point hygrometer on the plant schedule at the prototype fast breeder reactor MONJU, Japan Atomic Energy Agency examined a capacitance-type dew point hygrometer as an alternative to the lithium-chloride dew point hygrometer being used in the containment vessel leak rate test. As verifications, a capacitance-type dew point hygrometer was compared with a lithium-chloride dew point hygrometer under a containment vessel leak rate test condition. And the capacitance-type dew point hygrometer was compared with a high-precision-mirror-surface dew point hygrometer for long-term (2 years) in the containment vessel as an unprecedented try. A comparison of a capacitance-type dew point hygrometer with a lithium-chloride dew point hygrometer in a containment vessel leak rate test (Atmosphere: nitrogen, Testing time: 24 h) revealed no significant difference between the capacitance-type dew point hygrometer and the lithium-chloride dew point hygrometer. A comparison of the capacitance-type dew point hygrometer with the high-precision-mirror-surface dew point hygrometer for long-term verification (Atmosphere: air, Testing time: 24 months) revealed that the capacitance-type dew point hygrometer satisfied the instrument specification (synthesized precision of detector and converter: ±2.04°C) specified in the Leak Rate Test Regulations for containment vessel. It was confirmed that the capacitance-type dew point hygrometer can be used as a long-term alternative to the lithium-chloride dew point hygrometer without affecting the dew point hygrometer maintenance schedule of the MONJU plant. (author)

Availability note (English)

Available from JAEA; DOI: https://doi.org/10.11484/jaea-research-2016-021

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Publishing Information

Imprint Pagination
42 p.
Report number
JAEA-Research--2016-021

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Notes
7 refs., 24 figs., 12 tabs.