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Optimization-based Multi-attribute Decision Making for the 7th Generation Semi-submersible Drilling Unit

机译:基于优化的第7代半潜式钻井装置的多属性决策

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The 7th generation semi-submersible drilling units (CSDU) are characteristic of deeper drilling depth, site locations and higher operational efficiency, compared with the last generation ones. Given the enormous live loads change and increasing trend of main size dimensions, considerable optimization should be deployed to achieve a balance of economy, safety and good work performance. Trial calculation and definite assessment to check whether alternative schemes meet the requirements turns out to be ineffective, for the case by case study of hydrodynamic and structure strength analysis is time consuming. In the paper, an integrated optimal design model is formulated by merging multi-objective optimization and multi-attribute decision making into one. A predesigned parametric Finite Element Analysis (FEA) structural model of CSDU is developed and validated and then coupled with detailed hydrodynamic analysis. Three mutually conflicting design objectives are arrived by hydrodynamic solutions. They are stability, hydrodynamic performance and steel consumption, which are screened to obtain Pareto optimality. The Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) is applied to incorporate these optimal attributes into decision-making process,considering all criteria in terms of quantitative stability, hydrodynamic performance and qualitative economy. The objective entropy coefficient measuring the importance of different attributes is introduced into weight selection for the purpose of avoiding non-determinacy and optional judgements. The optimal solutions are further verified with main dimensions of CSDUs in service and also could give predictive suggestion for the new CSDUs. The study provides a more objective way of benchmarking different structural schemes of CSDU by considering multiple criteria simultaneously. It is demonstrated that the proposed structural optimization model is capable of effectively and accurately determining the optimal design of CSDU.
机译:与最后一代人相比,第七代半潜式钻井单元(CSDU)是更深的钻井深度,场地位置和更高的操作效率的特征。鉴于巨大的活载变化和增加主尺寸尺寸的趋势,应部署相当大的优化,以实现经济,安全性和良好的工作表现。试验计算和确定评估检查是否符合要求的替代方案证明是无效的,因为通过水动力学和结构强度分析的情况是耗时的情况。在本文中,通过将多目标优化和多属性决策合并到一个中,配制了一个集成的最佳设计模型。开发和验证了CSDU的预测参数有限元分析(FEA)结构模型,然后与详细的流体动力学分析相结合。三种相互冲突的设计目标是由流体动力解决方案到达的。它们是稳定性,流体动力学性能和钢消耗,筛选帕累托最优性。通过相似性与理想解决方案(TOPSIS)的顺序偏好技术将这些最佳属性与决策过程结合在一起,考虑到定量稳定性,流体动力学性能和定性经济方面的所有标准。测量不同属性的重要性的目标熵系数被引入重量选择,以避免非确定性和可选的判断。最佳解决方案进一步验证了CSDU中的主要维度,也可以为新的CSDU提供预测建议。该研究通过同时考虑多标准,提供了一种更客观的方式来基准CSDU的不同结构方案。结果证明,所提出的结构优化模型能够有效准确地确定CSDU的最佳设计。

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