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Technical Paper

An Improved Model for Assessing the Effectiveness of Hydrogen Water Chemistry in Boiling Water Reactors

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Pages 221-233 | Published online: 10 Apr 2017

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Mei-Ya Wang, Tsung-Kuang Yeh, Hong-Ming Liu & Min Lee. (2013) Predicted Water Chemistry in the Primary Coolant Circuit of a Supercritical Water Reactor. Nuclear Science and Engineering 174:2, pages 179-187.
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Tsung-Kuang Yeh & Mei-Ya Wang. (2013) Water Chemistry in the Primary Coolant Circuit of a Boiling Water Reactor during Startup Operations. Nuclear Science and Engineering 173:2, pages 163-171.
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Tsung-Kuang Yeh & Mei-Ya Wang. (2010) The Impact of Power Coastdown Operations on the Water Chemistry and Corrosion in Boiling Water Reactors. Nuclear Science and Engineering 165:2, pages 210-223.
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Tsung-Kuang Yeh & Mei-Ya Wang. (2009) The Impact of Core Flow Rate on the Hydrogen Water Chemistry Efficiency in Boiling Water Reactors. Nuclear Science and Engineering 161:2, pages 235-244.
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Tsung-Kuang Yeh & Mei-Ya Wang. (2008) The Impact of Power Uprate on the Corrosion Mitigation Effectiveness of Hydrogen Water Chemistry in Boiling Water Reactors. Nuclear Science and Engineering 160:1, pages 98-107.
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Mei-Ya WANG & Tsung-Kuang YEH. (2008) Impact of Power Uprate on the Water Chemistry in the Primary Coolant Circuit of a Boiling Water Reactor Operating under a Fixed Core Flow Rate. Journal of Nuclear Science and Technology 45:8, pages 802-811.
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Tsung-Kuang Yeh. (2002) A Numerical Model for Evaluating the Impact of Noble Metal Chemical Addition in Boiling Water Reactors. Nuclear Science and Engineering 142:2, pages 220-229.
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