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ssc-367 - Ship Structure Committee

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4.12 Daidola, J.C., and Basar, N.S., ‘probabilistic Structural<br />

Analysis of <strong>Ship</strong> Hull Longitudinal Stresses,” <strong>Ship</strong> <strong>Structure</strong><br />

ConunitteeReport SSC-301, 1981.<br />

4.13 Wells, A.A., “The Waning of Fitness-for-Purpose and the<br />

Concept of Defect Tolerance,” International Conference on<br />

Fitness for Purpose Validation of bleldedConstructions, The<br />

Welding Institute,Volume 1, Paper No. 33, London, 1981.<br />

4.14 Structural Welding Code, American Welding Society, AWS D1.1,<br />

1988.<br />

4.15 Specifications for the Design, Fabrication and Erection of<br />

Structural Steel for Buildings, American Institute of Steel<br />

Construction, 1989.<br />

4.16 Rules for Steel <strong>Ship</strong>s, Oil Productionand Storage Vessels,Det<br />

norske Veritas, Part 5, Chapter 9, 1986.<br />

4.17 Rules for Classificationof Fixed Offshore Installations,Det<br />

norske Veritas, January 1989.<br />

4.18 Rules and Regulationsfor the Classificationof Fixed Ofshore<br />

Installations, Lloyd’s Register, Part 4, Steel <strong>Structure</strong>s,<br />

July 1988.<br />

4.19 Gurney, T.R., “The Influence of Thickness of the Fatigue<br />

Strength of Welded Joints,” BOSS Conference, London, August<br />

1979, Paper No. 41.<br />

4.20 Lotsberg, I., and Anderssson, H., “Fatigue in Building Codes<br />

Background and Applications,H Chapter 11, Fatigue Handbook -<br />

Offshore Steel <strong>Structure</strong>s, Edited by A. Almar-Naess, Tapir,<br />

1985.<br />

10-4

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