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Featured researches published by Shun Watanabe.


ASME 2014 Pressure Vessels and Piping Conference | 2014

Numerical Evaluation of Wall Thinning Profile in Separation and Union Pipe due to Flow Accelerated Corrosion

Shun Watanabe; Kimitoshi Yoneda

Flow Accelerated Corrosion (FAC) is a pipe wall thinning phenomenon to be monitored and managed in power plants with high priority. In Japan, its management has been conducted with conservative evaluation of thinning rate and residual lifetime of the piping based on wall thickness measurements. However, noticeable case of the wall thinning occurred at separation and union pipe. In such pipe system, it is a problem to manage a section beneath reinforcing plate of T-tube pipe and a crotch of T-joint pipe; wall thickness measurement with high accuracy is difficult to conduct in the region by using ordinary ultrasonic testing devices. In this study, numerical analysis for separation and union parts of T-tube and T-joint pipes was conducted, and wall thinning profile by FAC was evaluated by calculating mass transfer coefficient and geometry factor. Based on these results, applicable wall thinning management for T-tube and T-joint pipes was considered. In the case of union flow from main and branch pipe, the wall thinning profile of T-tube showed the tendency of increase at main pipe like semielliptical region. On the other hand, noticeable profile appeared at crotch in T-joint although it was found that geometry factor of T-joint in this flow pattern was half the value of T-tube. An alternative evaluation method to previous one might be needed for such semielliptical region in T-tube and crotch in T-joint.Copyright


Volume 6B: Thermal-Hydraulics and Safety Analyses | 2018

Evaluation of Jet Impact Region and Fluid Force Generated From Ruptured Pipes: Part 4 — Numerical Evaluation of Affected Region by Flashing Jet Flow

Ryo Morita; Shun Watanabe; Shiro Takahashi; Noriyuki Takamura


Volume 4: Fluid-Structure Interaction | 2018

Investigation of Fluid Diffusion Properties From Various Flaw Geometries of Piping

Shun Watanabe; Ryo Morita; Yuta Uchiyama


The Proceedings of the National Symposium on Power and Energy Systems | 2017

Wall Thinning Profile by Flow Accelerated Corrosion in Continuous Pipe Elements

Shun Watanabe; Kimitoshi Yoneda; Ryo Morita


The Proceedings of Mechanical Engineering Congress, Japan | 2017

Research and Surveillance Activities for the Improvement of Pipe Wall Thinning Management: (5. Applicability of Leakage Risk Assessment for Pipe Wall Thinning Management)

Shun Watanabe; Yutaka Watanabe; Yoichi Utanohara


ASME 2017 Pressure Vessels and Piping Conference | 2017

Study on Diffusion Area of Fluid Leakage With Pipe Failure

Shun Watanabe; Kimitoshi Yoneda


The Proceedings of the National Symposium on Power and Energy Systems | 2016

Implementation of Prediction Model for Effects of Swirl Flow on FAC in Pipe Wall Thinning Prediction Software “FALSET”

Yuta Uchiyama; Kimitoshi Yoneda; Shun Watanabe; Ryo Morita


The Proceedings of Mechanical Engineering Congress, Japan | 2016

Numerical Evaluation of Flow Behavior and Pipe Wall Thinning Trend due to Flow Accelerated Corrosion in Large Scale Test Loop

Shun Watanabe; Ryo Morita; Toshifumi Hirasaki


2016 24th International Conference on Nuclear Engineering | 2016

Evaluation of Jet Impact Region and Fluid Force Generated From Ruptured Pipes: 3 — Evaluation of Established Standards

Qiang Xu; Shiro Takahashi; Noriyuki Takamura; Ryo Morita; Yuta Uchiyama; Shun Watanabe


2016 24th International Conference on Nuclear Engineering | 2016

Evaluation of Jet Impact Region and Fluid Force Generated From Ruptured Pipes: 2 — Evaluation of Fluid Force Using Computational Fluid Dynamics Analysis

Shiro Takahashi; Qiang Xu; Noriyuki Takamura; Ryo Morita; Yuta Uchiyama; Shun Watanabe

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Ryo Morita

Central Research Institute of Electric Power Industry

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Kimitoshi Yoneda

Central Research Institute of Electric Power Industry

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Yuta Uchiyama

Central Research Institute of Electric Power Industry

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Fumio Inada

Central Research Institute of Electric Power Industry

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