Flow Accelerated Corrosion Prediction in High Pressure Economizer of a Heat Recovery Steam Generator

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 105

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شناسه ملی سند علمی:

JR_JACM-11-4_004

تاریخ نمایه سازی: 1 تیر 1405

چکیده مقاله:

This paper examines the flow accelerated corrosion in tubes downstream of an inlet header of the High-Pressure Economizer system using computational fluid dynamics (CFD). This problem was recently identified in a heat recovery steam generator. The k-ε RNG model with enhanced wall functions was employed. CFD results showed that, at the ends of inlet pipes, abrupt change in flow area resulted in recirculation and jet flow. Flow acceleration downstream of the inlet pipes caused strong recirculation at the entrance of two to three tubes extending from the inlet pipes’ centerline. This recirculation forced the flow in the remaining area to accelerate, causing higher wall shear stresses on the side opposite the recirculation. As high shear stresses correlate with the locations where the flow accelerated corrosion occurs severely in practice, the Chilton-Colburn analogy was applied for FAC rate prediction. Predicted rates and measured rates agreed, although some predicted values were overestimated. The distributions of predicted FAC rates matched the tubes thickness distributions. The maximum predicted rate was ۰.۷۳۹ mm/year on the left wall of tube ۱۱ at an elevation ۰.۰۴۵ m below the header centerline. Lastly, a design of experiments was conducted, varying operating flow temperature, pressure, and velocity. ANOVA revealed that FAC in this case was most sensitive to flow velocity. The operating temperature, pressure and tube average velocity that resulted in the minimum FAC rate of ۰.۴۲۴ mm/year were ۱۶۰.۴۸°C, ۱۹۰.۷۶ bar, and ۰.۶۳۹ m/s, respectively.

نویسندگان

Phuris Khunphakdee

Program of Petrochemistry and Polymer Science, Chulalongkorn University, ۲۵۴ Phaya Thai Rd, Pathum Wan, Bangkok ۱۰۳۳۰, Thailand

Kiattikhoon Phuakpunk

Energy Research Institute, Chulalongkorn University, ۲۵۴ Phaya Thai Rd, Pathum Wan, Bangkok ۱۰۳۳۰, Thailand

Benjapon Chalermsinsuwan

Fuels Research Center and Center of Excellence on Petrochemical and Materials Technology, Chulalongkorn University, ۲۵۴ Phaya Thai Rd, Pathum Wan, Bangkok ۱۰۳۳۰, Thailand

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  • Khunphakdee, P., Chalermsinsuwan, B., Review of flow accelerated corrosion mechanism, ...
  • Caravaggio, M., Shulder, S., Guidelines for control of flow-accelerated corrosion ...
  • Dooley, B., Lister, D., Flow-Accelerated Corrosion in Steam Generating Plants, ...
  • Madasamy, P., Krishna Mohan, T. V., Sylvanus, A., et al., ...
  • Utanohara, Y., Murase, M., Influence of flow velocity and temperature ...
  • Kim, D. J., Kim, S. W., Lee, J. Y., et ...
  • Hur, D.-H., Han, J., Lee, Y.-K., Atomic-Scale Insights into Flow-Accelerated ...
  • Prasad, M., Gopika, V., Sridharan, A., et al., Pipe wall ...
  • Chae, Y. H., Kim, S. G., Kim, H., et al., ...
  • Madasamy, P., Chandramohan, P., Mukunthan, M., et al., Flow accelerated ...
  • Madasamy, P., Mukunthan, M., Chandramohan, P., et al., Influence of ...
  • Yoneda, K., Uchiyama, Y., Morita, R., et al., Prediction of ...
  • Utanohara, Y., Nagaya, Y., Nakamura, A., et al., Influence of ...
  • Ahmed, W. H., Bello, M. M., El Nakla, M., et ...
  • Lin, C., Ferng, Y. M., Predictions of hydrodynamic characteristics and ...
  • Bignold, G. J., Garbett, K., Garnsey, R., and Woolsey, I. ...
  • Wang, C.-C., Yang, K.-S., Tsai, J.-S., et al., Characteristics of ...
  • Wei, M., Fan, Y., Luo, L., et al., CFD-based evolutionary ...
  • ASME, BPVC Section II-Materials-Part A-Ferrous Material Specifications, ۲۰۲۳ ...
  • Zhao, Y., Akolekar, H. D., Weatheritt, J., et al., RANS ...
  • Wei, H., Chen, Y., Assessment of different turbulence models on ...
  • Phuris, K., Ratchanon, P., Benjapon, C., Assessing Turbulent Models for ...
  • Yakhot, V., Thangam, S., Gatski, T. B., et al., Development ...
  • Ansys Fluent; ۲۰۲۳ R۱, ۲۰۲۳ ...
  • Cengel, Y. A., Ghajar, A. J., Heat and Mass Transfer ...
  • Yoneda, K., Morita, R., Fujiwara, K., Quantitative evaluation of effective ...
  • ASME, Boiler and Pressure Vessel Code, Section II, Part A ...
  • Huang, F., Qiu, D., Peng, L., et al., Optimization of ...
  • Jiang, Y., Alawee, W. H., Essa, F. A., et al., ...
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