• OpenWindPower Floating Platform

    具备提供可再生能源的强大能力

OpenWindPower Floating Platform

使用 OpenWindPower Floating Platform 开发安全可靠且经济有效的浮式风力发电场结构的设计方案。使用综合性自动化工具确定水动力荷载、气动力荷载以及结构荷载,从而节省时间。通过将众多的频率或者时域计算工况分布到单台电脑的多核,或者局域网内的多台电脑,进行并行计算,从而极大程度地减少计算时间。

了解更多 +
    • MO TLP Objects Light
    • ME Layout Results Model DCW Panel Pressure
    • ME Layout Results & Model Hywind Bladed Interoperability
    • ME Grid DCW
    • PV Plate Stress DCW
    • MO TLP Objects Light
    • ME Layout Results Model DCW Panel Pressure
    • ME Layout Results & Model Hywind Bladed Interoperability
    • ME Grid DCW
    • PV Plate Stress DCW
功能
  • 浮式平台建模

    • 通过使用向导和交互式建模工具,为任何类型的平台创建复杂的三维模型。借助易于使用的工具,对模型做出考量后的更改,系统地探索设计备选方案。应用无缝数据交互流程,提高初始设计过程中的生产效率。
  • 分析浮式系统

    • 使用 MOSES 模拟语言在统一环境中定义环境条件、指定系泊配置并运行集成求解器,从而自动运行分析,以确保各个作业条件下的系统响应值满足规范要求的限值。
  • Integrate with aeroelastic wind turbine solvers

    • Optimize the interaction between the floating platform and the wind turbine through the MOSES interface with DNV GL's Bladed. Export the floating platform's hydrodynamic database from MOSES via the ubiquitous WAMIT file format. Automate the import of thousands of Bladed load cases for complete MOSES time domain analyses, accounting for the wind-induced mechanical loading on the turbine.
  • Automate multiple analyses across a local network grid

    • Save time by executing multiple MOSES analyses simultaneously across the available cores on a single machine, or by distributing to the available nodes on a local area network, with the Bentley Analysis Service.
  • 确保遵循海洋工程设计规范

    • 使用内置校核确保结构设计符合规范,校核各种极限设计工况结果。优化设计和配置,遵循最新和既有的若干国际规范,包括 API、AISC、EC、ISO、DNV 和 Norsok,从而交付符合规范要求的设计文件。
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