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Development of a Structural Hot Spot Stress Estimation Technique Based on Shell FE Analysis for Ship Structural Details under the Real Load

机译:基于壳体Fe分析的结构热点应力估算技术的发展实际载荷下的船舶结构细节

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A new simple and accurate shell finite element (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 (Lotsberg et al., 2007) and the conventional 0.5t-l .5t extrapolation. It is shown that 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 following the proposed method. HSSs of welded joints in BC lower stool models subject to pressure loadings derived by the proposed method show good agreement with the target HSSs. This demonstrates the validity of the proposed method for actual ship structures under the real load. The proposed HSS determination method has advantage over Lotsberg's method in the accuracy and application range.
机译:已经提出了一种新的简单和准确的壳有限元(FE)基础的结构热点应力(HSS)用于纤维化坩埚接头的确定方法。检查全尺寸散装载体(BC)的焊接接头的局部应力,其下凳模型受到弯曲和压力载荷的较低。将所提出的方法确定的HSSS与Lotsberg方法(Lotsberg等,2007)和传统0.5T-L.5T外推的那些进行比较。结果表明,通过遵循所提出的方法,可以通过壳Fe结果精确地计算具有各种粪便角度和板厚度的全尺寸BC下凳型号的局部应力。 BC焊接接头的HSSS下凳模型受到所提出的方法导出的压力载荷,与目标HSSS显示出良好的一致性。这证明了在实际负载下实际船舶结构的提出方法的有效性。所提出的HSS测定方法在精度和应用范围内具有优于Lotsberg的方法。

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