Coke drums undergo cyclic operations typically in the temperature range from room temperature to about 500°C (930°F). During quenching, the coke drum is inevitably subjected to a rapid drop in temperature because cooling water is injected directly into the coke drum through the bottom inlet nozzle. The temperature profile on the shell surface is uneven during quenching, and can vary in each cycle of the quenching operation. Such a complicated thermal profile induces large strains in the shell portion of the coke drum, and eventually causes damage like bulging and/or cracking. The authors have investigated the bulging behavior of the coke drum by the thermal elastic-plastic FE-analysis, considering the existence of the overmatch welds and uneven temperature field during quenching [1]. In this paper, a practical FE-analysis is developed to estimate the complex strain that leads to bulging under uneven temperature fields during quenching. The actual temperature and strain data during operation are collected by thermocouples and high temperature strain gauges. A thermal analysis model, including an evaluation of boiling heat transfer on the shell’s inner surface, is established to simulate the measured shell behavior of the coke drum. By utilizing this FE-analysis model, several parameters thought of as causal factors in bulging can be examined under the uneven temperature profile that is likely to occur during actual operation. This analytical approach can also provide effective technique for improvements in shell durability.
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ASME 2011 Pressure Vessels and Piping Conference
July 17–21, 2011
Baltimore, Maryland, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-4454-0
PROCEEDINGS PAPER
Investigation of Bulging Behavior of Coke Drum: A Practical Analysis of Bulging Under Complex Quench Conditions
Toshiya Yamamoto,
Toshiya Yamamoto
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
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Kazuaki Arii,
Kazuaki Arii
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
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Huhetaoli,
Huhetaoli
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
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Shinta Niimoto,
Shinta Niimoto
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
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Mitsuru Ohata,
Mitsuru Ohata
Osaka University, Suita, Osaka, Japan
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Tetsuya Tagawa,
Tetsuya Tagawa
Osaka University, Suita, Osaka, Japan
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Fumiyoshi Minami
Fumiyoshi Minami
Osaka University, Suita, Osaka, Japan
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Toshiya Yamamoto
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
Kazuaki Arii
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
Huhetaoli
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
Shinta Niimoto
Sumitomo Heavy Industries Process Equipment Co., Ltd., Saijo, Ehime, Japan
Mitsuru Ohata
Osaka University, Suita, Osaka, Japan
Tetsuya Tagawa
Osaka University, Suita, Osaka, Japan
Fumiyoshi Minami
Osaka University, Suita, Osaka, Japan
Paper No:
PVP2011-57428, pp. 563-572; 10 pages
Published Online:
May 21, 2012
Citation
Yamamoto, T, Arii, K, Huhetaoli, , Niimoto, S, Ohata, M, Tagawa, T, & Minami, F. "Investigation of Bulging Behavior of Coke Drum: A Practical Analysis of Bulging Under Complex Quench Conditions." Proceedings of the ASME 2011 Pressure Vessels and Piping Conference. Volume 4: Fluid-Structure Interaction. Baltimore, Maryland, USA. July 17–21, 2011. pp. 563-572. ASME. https://doi.org/10.1115/PVP2011-57428
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