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Shell Wall Thinning and Mitigation Plan and Design Modification of a Feedwater Heater Impingement Baffle

Kyung Hoon Kim, Kyeong Mo Hwang, Sang Hoon Park
JKSPE 2010;27(6):55-63.
Published online: June 1, 2010
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Feedwater heaters of many nuclear power plants have recently experienced severe wall thinning damage, which will increase as operating time progresses. Several nuclear power plants in Korea have experienced wall thinning damage in the area around the impingement baffle inside feedwater heater installed downstream of the turbine extraction stream line. At that point, the extract steam from the turbine is two phase fluid at high temperature, high pressure, and high speed. Since it flows to reverse direction after impinging the impingement baffle, the shell wall of feedwater heaters may be affected by flow-accelerated corrosion. In this paper, to compare degree of shell wall thinning mitigation rate to squared type with mitigation rate of other type baffle plate, three different types of impingement baffle plate-squared, curved and mitigating typeapplied inside the shell. With these comparison data, this paper describes operation of experiments and numerical analysis which is composed similar condition with real feed water heater. And flow visualization is operated for verification of experiments and numerical analysis. In conclusion, this study shows that mitigating type baffle plate is more effective than other baffle plate about prevention of pressure concentration and pressure value decrease.

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Shell Wall Thinning and Mitigation Plan and Design Modification of a Feedwater Heater Impingement Baffle
J. Korean Soc. Precis. Eng.. 2010;27(6):55-63.   Published online June 1, 2010
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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Shell Wall Thinning and Mitigation Plan and Design Modification of a Feedwater Heater Impingement Baffle
J. Korean Soc. Precis. Eng.. 2010;27(6):55-63.   Published online June 1, 2010
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