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Reliability-Based Full-Life Cycle Optimum Design of Offshore Jacket Platform

机译:基于可靠性的近夹克平台的全寿命优化设计

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摘要

Based on the consideration of operation environment and structural property, an optimum design model of offshore jacket platform is developed in this paper, namely, the reliability-based full-life cycle optimum design model. In this model, the time-dependent reliability assessment method for structural members is established by combination of the decrease of sectional size and performance deterioration of material. The initial investment, maintenance cost and failure loss cost are assembled into the model. The total cost of the platform structure system in its full service period is chosen as the objective function, and the initial reliabilities of the layer elements partitioned in advance are taken as the design variables. Different models are obtained, depending on whether the system reliability constraint is considered or not. This optimum design model can result in the lowest full-life cost and the optimal initial layer reliability of an offshore jacket platform in the design of marine structures. The feasibility of this model is illustrated with an actual jacket platform in the Liaodong Gulf as an example.
机译:基于对运营环境和结构性的考虑,本文开发了近海夹套平台的最佳设计模型,即基于可靠性的全生活周期优化设计模型。在该模型中,通过组合截面尺寸和性能劣化的减少来建立结构构件的时间依赖性可靠性评估方法。初始投资,维护成本和故障损失成本组装到模型中。选择完整的服务期间平台结构系统的总成本作为目标函数,并且预先分区的层元素的初始可靠性被视为设计变量。取决于是否考虑了系统可靠性约束,获得了不同的模型。这种最佳设计模型可导致船舶结构设计中最低的全寿命成本和离岸夹套平台的最佳初始层可靠性。该模型的可行性用辽东海湾的实际夹克平台作为一个例子。

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