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A multi-objective sequential method for manufacturing cost and structural optimization of modular steel towers

机译:模块化钢塔制造成本和结构优化的多目标顺序方法

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摘要

This paper proposes a methodological approach for the multi-objective optimization of steel towers made from prefabricated cylindrical stacks that are typically used in the oil and gas sector. The goal is to support engineers in designing economical products while meeting structural requirements. The multi-objective optimization approach involves the minimization of the weights and costs related to the manufacturing and assembly phases. The method is based on three optimization levels. The first is used in the preliminary design phase when a company receives a request for proposal. Here, minimal information on the order is available, and the time available to formulate an offer is limited. Thus, parametric cost models and simplified 1-D geometries are used in the optimization loop performed by genetic algorithms. The second phase, the embodiment design phase, starts when an offer becomes an order based on the results of the first stage. Simplified shell geometries and advanced parametric cost models are used in the optimization loop, which present a restricted problem domain. In the last phase involving detailed design, a full 3-D computer-aided design model is generated, and specific finite-element method simulations are performed. The cost estimations, given the high levels of detail considered, are analytic and are performed using dedicated software.
机译:本文提出了一种方法论方法,用于由预制圆柱堆叠制成的钢塔的多目标优化,这些方法通常用于油气部门。目标是支持工程师在满足结构要求时设计经济产品。多目标优化方法涉及最小化与制造和装配阶段相关的权重和成本。该方法基于三个优化水平。第一个在公司收到提案请求时用于初步设计阶段。在这里,有关订单的最小信息可用,并且可用于制定要约的时间有限。因此,参数成本模型和简化的1-D几何在遗传算法执行的优化环中使用。第二阶段,实施方式设计阶段在基于第一阶段的结果变为订单时开始。简化的壳体几何形状和高级参数成本模型用于优化循环,呈现限制问题域。在涉及详细设计的最后阶段,生成了完整的3-D计算机辅助设计模型,并执行特定的有限元方法模拟。考虑到考虑的高水平细节的成本估算是分析的,并且使用专用软件进行。

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