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Icebreaker Grillage Structural Interaction and the Characteristic Stiffness Curve

机译:破冰侠格栅结构相互作用与特征刚度曲线

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The structural components of a typical icebreaker hull grillage section consist of hull plating, main frames, web frames and stringers. The grillage section is the main structure resisting local ice loads during icebreaking and maneuvering operations. As such, the structural integrity of the icebreaker is largely dependent on the design strength of the grillage sections along the length of the vessel. The latest release of the IACS Unified Requirements for Polar Ships specifically pertains to structural design of these local grillage sections. Within the IACS Unified Requirements, prescriptive formulas are used to define the hull plating and main frame strength requirements as a function of stiffening direction, longitudinal/vertical location and operational requirements. The stringer and web frame stability requirements however, are limited to meeting empirical criteria. Limited examples of stringer and web frame prescriptive design strength formulations are available in the literature. These formulations may lead to an overly conservative stringer or web frame section design due to the challenge of representing the grillage section structural component interaction. To properly understand the structural interaction of icebreaker grillage section components, LR has used nonlinear finite element methods to compute the characteristic stiffness curve well into plasticity. The characteristic stiffness curve is considered representative of the effective structural interaction of the section components and has been found to relate directly to the section design methodology (elastic or plastic). This paper presents the development of these stiffness curves; the relationship between stiffness curve characteristics and design methodology; and how stiffness curves may be used for structural design and verification.
机译:典型的破冰船船体毛坯部分的结构部件包括船体电镀,主框架,幅材框架和桁条。格栅部分是在破冰和机动操作期间抵抗局部冰负荷的主要结构。因此,破冰船的结构完整性在很大程度上取决于沿着容器长度的毛坯部分的设计强度。最新发布的IACS对极地船舶的统一要求具体涉及这些本地葡萄酒部分的结构设计。在IACS统一的要求中,规定式公式用于根据加强方向,纵向/垂直位置和操作要求来定义船体电镀和主框架强度要求。然而,纵梁和网络框架稳定性要求仅限于满足实证标准。有限的纵梁和网架规定设计强度配方在文献中提供。由于代表格栅部分结构组分相互作用的挑战,这些制剂可能导致过度保守的纵梁或腹板框架截面设计。为了正确理解破冰炉毛坯部分组分的结构相互作用,LR使用了非线性有限元方法来将特征刚度曲线计算成可塑性。特征刚度曲线被认为是截面组分的有效结构相互作用,并且已被发现直接与截面设计方法(弹性或塑料)相关联。本文介绍了这些刚度曲线的发展;刚度曲线特征与设计方法的关系;刚度曲线如何用于结构设计和验证。

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