Development of parametric equations for ultimate capacity of internally ring-stiffened tubular T/Y-joints under axial and moment load
Author:
Affiliation:
1. Department of Ocean Engineering, IIT Madras, Chennai, India
Publisher
Informa UK Limited
Subject
Mechanical Engineering,Ocean Engineering
Link
https://www.tandfonline.com/doi/pdf/10.1080/17445302.2021.1884810
Reference33 articles.
1. A probability distribution model for SCFs in internally ring-stiffened tubular KT-joints of offshore structures subjected to out-of-plane bending loads
2. Parametric study and formulation of outer-brace geometric stress concentration factors in internally ring-stiffened tubular KT-joints of offshore structures
3. Chord-side SCF distribution of central brace in internally ring-stiffened tubular KT-joints: A geometrically parametric study
4. Probability density functions of SCFs in internally ring-stiffened tubular KT-joints of offshore structures subjected to axial loading
5. Stress concentration factors induced by out-of-plane bending loads in ring-stiffened tubular KT-joints of jacket structures
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1. Probability distribution functions for the ultimate strength of X-joints with collar plates in compressive load at room and fire conditions;Structures;2024-01
2. Development of a methodology to estimate fatigue damage in tubular joints of jackets due to direct wave loads in splash zone;OCEANS 2022, Hampton Roads;2022-10-17
3. Simplified methods for the strength of ring-stiffened tubular T/Y-joints;Ships and Offshore Structures;2022-08-26
4. Development of a probability distribution model for the SCFs in tubular X-connections retrofitted with FRP;Structures;2022-02
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