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基于某海域整体式与预制舱式海上升压站对比分析研究

Comparative Analysis of Integral and Prefabricated Capsule Offshore Substations Based on Specific Sea Area

  • 摘要: 针对某500 MW海上风电场220 kV海上升压站选型问题,对比研究整体式与预制舱式方案。结果表明:整体式采用单一责任主体模式,设计周期较预制舱式缩短约2个月;上部组块总重约2500吨,较预制舱式减轻21.9%,平面尺寸缩减26.8%,结构轻量化优势显著。经济性方面,整体式总建设费用节约1574.10万元(降幅7.54%),主要源于基础与上部结构的材料优化。技术实施层面,整体式在结构安全、防雷接地、防腐及电缆敷设等核心指标上全面占优,规避了预制舱方案的变形难控、系统割裂等隐患。尽管预制舱式建造周期缩短1个月且降低了对大型海工基地的依赖,但其设计协同成本高、管理界面复杂,综合效益劣势明显。研究表明,整体式方案凭借设计协同、结构经济及运行可靠性的综合优势,是现阶段海上升压站工程建设的优选技术方案。

     

    Abstract: TTo select the optimal 220 kV offshore substation scheme for a 500 MW offshore wind farm, this paper compares the integrated and prefabricated cabin schemes across five dimensions: design management, structural economics, technical implementation, construction schedule, and full life-cycle cost. The results show that the integrated scheme adopts a single-point responsibility model, shortening the design cycle by approximately 2 months compared to the prefabricated cabin scheme. Its upper block weighs about 2500 tons, representing a 21.9% reduction and a 26.8% smaller footprint, demonstrating significant structural lightweighting advantages. Economically, the integrated scheme saves approximately 15.741 million CNY (a 7.54% reduction), primarily due to material optimization in the foundation and superstructure. Technically, the integrated scheme outperforms the prefabricated cabin scheme comprehensively in structural safety, lightning protection grounding, anti-corrosion, and cable routing, effectively mitigating risks such as deformation control difficulties and system fragmentation. Although the prefabricated cabin scheme offers a 1-month shorter construction period and reduces reliance on large-scale offshore fabrication bases, its high coordination costs and complex management interfaces result in significantly lower overall benefits. The study indicates that the integrated scheme, leveraging its comprehensive advantages in design coordination, structural economy, and operational reliability, is the preferred technical solution for current offshore substation construction.

     

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