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Study on the preciseness of hot spot stress of web-stiffened cruciform welded joints derived from shell finite element analyses
Authors:N Osawa  N YamamotoT Fukuoka  J SawamuraH Nagai  S Maeda
Institution:a Department of Naval Architecture and Ocean Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan
b Research Center, Nippon Kaiji Kyokai, 1-8-3, Ohnodai, Midori-ku, Chiba 267-0056, Japan
c Mitsui Engineering & Shipbuilding Co., Ltd, 3-16, Nihonbashi 1-chome, Chuo-ku, Tokyo 103-0027, Japan
Abstract:A new simple and accurate shell FE-based structural Hot Spot Stress (HSS) determination method for web-stiffened cruciform joints has been proposed. Local stress of welded joints in full-scale bulk carrier (BC)’s lower stool models subject to bending and pressure loadings are examined. HSSs determined by the proposed method are compared with those derived by Lotsberg’s method and the conventional 0.5t-1.5t extrapolation. As results, following are found:
(1)
The local stress of full-scale BC lower stool models with various stool angle and plate thickness can be calculated accurately solely from shell FE results by means of the proposed method.
(2)
HSSs of welded joints in full-scale BC lower stool models subject to bending and pressure loadings derived by the proposed method show good agreement with the target HSSs determined from fine solid models. This demonstrates the validity of the proposed method for actual ship structures under the real load.
(3)
The excessive safety allowance of HSS determined by the conventional 0.5t-1.5t extrapolation can be reduced substantially by adopting Lotsberg’s method or our proposal. The proposed HSS determination method gives more accurate estimates compared to Lotsberg’s method under the conditions chosen, and the application range of the proposed method is equal to or wider than Lotsberg’s method.
Keywords:Hot spot stress  Fatigue  Finite element method  Shell element
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