For the radial flow reactor with a packed catalyst bed, the pressure drop in radial direction will affect bed support stress and load condition significantly. Increased fines due to catalyst attrition during operation will increase the radial pressure drop. For an extreme case, the entire catalyst bed could be pushed inward and pinned to the reactor’s perforated center screen, potentially causing the internal components to be overly stressed by the excessive load. Understanding the impact of radial pressure drop to bed stress and load distribution is very important for reactor internals design and operation. In this study, a generic packed catalyst bed for a radial flow reactor is analytically modeled and examined for stress and load by a classical granular solid material model, i.e., Janssen’s theory, which is further modified to include the pressure drop effects for a radial flow reactor. Interactions between bed stress, load, and radial pressure drop are explored. The critical condition is derived.
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ASME 2014 Pressure Vessels and Piping Conference
July 20–24, 2014
Anaheim, California, USA
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
978-0-7918-4600-1
PROCEEDINGS PAPER
Prediction of Packed Catalyst Bed Stress and Load for Radial Flow Reactors
Mingxin Zhao,
Mingxin Zhao
Chevron Energy Technology Company, Houston, TX
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Pedro Vargas
Pedro Vargas
Chevron Energy Technology Company, Houston, TX
Search for other works by this author on:
Mingxin Zhao
Chevron Energy Technology Company, Houston, TX
Pedro Vargas
Chevron Energy Technology Company, Houston, TX
Paper No:
PVP2014-28455, V003T03A046; 7 pages
Published Online:
November 18, 2014
Citation
Zhao, M, & Vargas, P. "Prediction of Packed Catalyst Bed Stress and Load for Radial Flow Reactors." Proceedings of the ASME 2014 Pressure Vessels and Piping Conference. Volume 3: Design and Analysis. Anaheim, California, USA. July 20–24, 2014. V003T03A046. ASME. https://doi.org/10.1115/PVP2014-28455
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