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Multi-objective parametric optimization of FPSO hull dimensions

机译:FPSO船体尺寸的多目标参数优化

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In order to achieve a good and competitive FPSO design, the building cost and the motion performances are the two most critical and conflicting KPIs to be considered. In this study, the author's previous work (Lee, et?al., 2021) on the optimization of an FPSO's hull dimensions with 1800 MBBLs storage capacity at Brazil field was extended using a multi-objective parametric optimization with the hull steel weight and the operability which are closely related to the building cost and the operational cost during the lifetime, respectively. For the purpose of more realistic and practical FPSO design, the constraints related to crew comfort and the safe helicopter take-off and landing operation were newly added. Also, the green water on deck was calculated accurately to check the suitability of the designed freeboard height using a newly developed real-time calculation module for the relative wave elevations. With aids of this updated optimization formulation, we presented multiple optimal FPSO dimensions expressed as a Pareto set which aids FPSO designers to conveniently select the practical and competitive dimensions. The excellence of the developed approach was verified by comparing the optimization results with those of FPSOs dimensioned for operation at West Africa and Brazil field.
机译:为了实现良好且竞争的FPSO设计,建筑成本和运动表演是最关键的kpis是最关键的,互相冲突。在这项研究中,作者之前的工作(Lee,et?al,2021),在Brazil领域的1800 Mbbl储存容量的优化中,使用了与船体钢重量的多目标是参数优化进行了扩展了FPSO的船体尺寸。与建筑成本密切相关的可操作性和在寿命期间的运营成本。为更加现实和实用的FPSO设计的目的,新增了与船员舒适性和安全直升机起飞和着陆操作相关的限制。此外,准确计算甲板上的绿色水,以检查设计的干舷高度的适用性,用于使用新开发的实时计算模块进行相对波形升降。借助这种更新的优化制定的辅助,我们提出了多种最佳的FPSO尺寸,表示为帕累托集,有助于FPSO设计人员方便地选择实用和竞争尺寸。通过将优化结果与西非和巴西领域的运作尺寸进行比较,通过将优化结果与FPSOS的优化结果进行比较来验证发达方法的卓越。

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