首页|基于AMESim的大功率风电平台液压升降系统安全平衡机构的设计与仿真

基于AMESim的大功率风电平台液压升降系统安全平衡机构的设计与仿真

扫码查看
针对海上风电装置功率和质量不断加大所带来的海上安全作业技术难题,对风电安装作业平台升降系统进行了改进设计.文中对升降系统平衡回路进行了设计与仿真.利用AMESim软件对设计出的风电安装平台平衡机构进行建立模型,并给定模拟信号,分析了单个桩腿液压升降系统安装12个升降单元时,每个升降马达受到2000 N·m时的转矩与转速变化曲线,并与安装16组升降单元时单个马达受到1500 N·m时的转矩与转速曲线作对比.最后对安装16组升降单元时单个马达故障情况进行仿真分析.结果表明,该液压升降系统能够稳定有效地运行,增设4组升降单元使系统稳定性有所提升,且在单个马达故障下,升降系统仍能稳定运行一段时间以保证平台的安全.对平衡回路的设计和优化有一定参考价值.
Design and Simulation of Hydraulic Lifting System Safety Balance Mechanism for High-power Wind Power Platform Based on AMESim
To solve the technical problems of offshore safe operation caused by the increasing power and weight of offshore wind power installation,the improved design is carried out on the wind power installation operation platform lifting system.Therefore,this paper carries out the design and simulation of the lifting system balance loop.AMESIM software is used to build the model of the balance mechanism of the wind power installation platform,and the simulation signal is given,this paper analyzes the installation of 12 lifting units of the single pile leg hydraulic lifting system.The torque and speed curves of each motor under 2000 N·m are compared with those of a single motor under 1500 N·m when 16 lifting units are installed.Finally,the fault of a single motor is simulated and analyzed when 16 groups of lifting units are installed.The results show that the hydraulic lifting system can run stably and effectively,and the stability of the system can be improved by adding 4 groups of lifting units,the lifting system can still run steadily for a period of time to ensure the safety of the platform.It has certain reference value to the design and optimization of the balance circuit.

hydraulic machineryAMESimbalance mechanismjack-up platform

许浩亮、马海林、谢永和、刘在良、黄永生、贾森君、杜炳鑫

展开 >

浙江海洋大学,浙江 舟山 316022

浙江友联修造船有限公司,浙江 舟山 316281

浙江国际海运职业技术学院,浙江 舟山 316021

液压系统 AMESim 平衡机构 自升式平台

2025

机械工程师
黑龙江省机械科学研究院 黑龙江省机械工程学会

机械工程师

影响因子:0.136
ISSN:1002-2333
年,卷(期):2025.(1)