EN
Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels
Abstract
The results of the parametric analysis of the cylinder-cylinder intersections in pressure vessels, performed in both elastic and plastic regions, are discussed in this study. Besides, the outcomes that contribute to the development of classical solutions in the literature are addressed as design curves depending on stress concentration factors (SCF). To begin with, the maximum stresses for cylinder-cylinder connections were calculated by finite element analysis and SCF values were obtained. In these calculations, external local loads acting on the nozzle centre and internal pressure are the main variables for loading conditions. Following that, different parametric approaches and loading conditions are presented to develop design curves for cylinder/cylinder connections by changing the main geometric parameters, such as cylinder and nozzle radii, and their thicknesses. A new approach is presented using these new curves thus allowing industrial designers to calculate maximum nozzle stresses without the need to undertake a thorough finite element analysis.
Keywords
References
- [1] Leckie, F. A., & Penny, R. K. (1963). Stress Concentration Factors for the Stresses at Nozzle Intersections in Pressure Vessels (Welding Research Council Bulletin 90).
- [2] Spence, J., & Tooth, A. S. (Eds.). (2012). Pressure vessel design: concepts and principles.
- [3] Kharat, A. R., Kamble, S. B., Patil, A. V., & Burse, I. D. (2016). comparative study of different approaches to estimate SCF in pressure vessel opening. Int. J. of Mechanical Engineering and Technology, 7: 142-155.
- [4] Money, H. A. (1968, January). Designing flush cylinder-to-cylinder intersections to withstand pressure. In Mechanical Engineering 90(11): 74.
- [5] Moffat, D. G., Mwenifumbo, J. A. M., Xu, S. H., & Mistry, J. (1991). Effective stress factors for piping branch junctions due to internal pressure and external moment loads. The Journal of Strain Analysis for Engineering Design, 26(2): 85-101.
- [6] Moffat, D. G., Mistry, J., & Moore, S. E. (1999). Effective stress factor correlation equations for piping branch junctions under internal pressure loading. Journal of Pressure Vessel Technolology, 121(2): 121-126 https://doi.org/10.1115/1.2883674
- [7] Mershon, J. L. (1987). Local Stresses in Cylindrical Shells due to External Loadings on Nozzles? Supplement to WRC Bulletin No. 107 (Revision 1). WRC Bulletin.
- [8] Lind, N. C. (1968, January). Approximate stress-concentration analysis for pressurized branch pipe connections. In Mechanical Engineering 90(3): 78
Details
Primary Language
English
Subjects
Solid Mechanics, Mechanical Engineering (Other)
Journal Section
Research Article
Publication Date
December 20, 2023
Submission Date
September 12, 2023
Acceptance Date
October 31, 2023
Published in Issue
Year 2023 Volume: 7 Number: 4
APA
Bozkurt, M., & Nash, D. (2023). Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels. European Mechanical Science, 7(4), 268-277. https://doi.org/10.26701/ems.1356968
AMA
1.Bozkurt M, Nash D. Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels. EMS. 2023;7(4):268-277. doi:10.26701/ems.1356968
Chicago
Bozkurt, Murat, and David Nash. 2023. “Stress Concentration Factor Based Design Curves for Cylinder-Cylinder Connections in Pressure Vessels”. European Mechanical Science 7 (4): 268-77. https://doi.org/10.26701/ems.1356968.
EndNote
Bozkurt M, Nash D (December 1, 2023) Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels. European Mechanical Science 7 4 268–277.
IEEE
[1]M. Bozkurt and D. Nash, “Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels”, EMS, vol. 7, no. 4, pp. 268–277, Dec. 2023, doi: 10.26701/ems.1356968.
ISNAD
Bozkurt, Murat - Nash, David. “Stress Concentration Factor Based Design Curves for Cylinder-Cylinder Connections in Pressure Vessels”. European Mechanical Science 7/4 (December 1, 2023): 268-277. https://doi.org/10.26701/ems.1356968.
JAMA
1.Bozkurt M, Nash D. Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels. EMS. 2023;7:268–277.
MLA
Bozkurt, Murat, and David Nash. “Stress Concentration Factor Based Design Curves for Cylinder-Cylinder Connections in Pressure Vessels”. European Mechanical Science, vol. 7, no. 4, Dec. 2023, pp. 268-77, doi:10.26701/ems.1356968.
Vancouver
1.Murat Bozkurt, David Nash. Stress concentration factor based design curves for cylinder-cylinder connections in pressure vessels. EMS. 2023 Dec. 1;7(4):268-77. doi:10.26701/ems.1356968
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