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用于振荡水柱波浪能转换装置的波-电耦合模型
Wave-to-wire model for an oscillating water column wave energy converter
| 作者 | Zhen-yu Ding · De-zhi Ning · Robert Mayon |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 377 卷 |
| 技术分类 | 功率器件技术 |
| 技术标签 | SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | An OWC-WtW time-domain model was established which achieves a comprehensive coupling between the air turbine and generator. |
语言:
中文摘要
摘要 波浪能是一种极具前景的可再生能源,有望显著缓解全球能源危机。在各类波浪能转换装置(WECs)中,振荡水柱(OWC)装置因其结构简单、运行可靠以及良好的耐久性而备受关注。本研究基于Simulink系统设计软件平台,建立了将双向透平-发电系统与OWC腔室耦合的数值模型。该集成模型实现了对冲击式透平与三相永磁同步发电机(PMSG)之间的全面耦合,同时保留了多相流体流动的动态特性,并最小化了影响系统性能的未知参数。波-电耦合(Wave-to-Wire, WtW)时域模型由能量捕获腔室、冲击式透平和PMSG组成,能够实现精确的输出功率预测、较短的计算时间以及全过程的完整耦合。通过将OWC装置置于抛物面墙聚能焦点位置开展验证实验,在包括规则波和不规则波在内的多种波况条件下,实验结果表明数值模型与物理模型之间具有高度一致性。本研究揭示了发电机对OWC系统的阻尼机制:当发电机在机械转矩驱动下运转时,会产生抵抗其运动的电磁转矩。该模型可评估每个能量转换阶段的输出功率和转换效率。当入射波高为0.075 m时,在特定实验配置下,平均电功率最大可达11.2 W,整体波-电转换效率可达98%。所建立的预测模型可作为设计高效OWC-WEC-WtW系统的重要工具。
English Abstract
Abstract Wave energy presents a promising renewable energy resource capable of significantly mitigating the global energy crisis. Among the various wave energy converters (WECs), the Oscillating Water Column (OWC) stands out due to its simple design, reliability, and robust survivability . A numerical model coupling a bi-directional turbine-generator system with the OWC chamber was developed using the Simulink system design software platform. This integrated model achieves comprehensive coupling between the impulse turbine and a three-phase permanent magnet synchronous generator (PMSG). This is accomplished while concurrently maintaining the dynamic characteristics of the multiphase fluid flows and minimizing the unknown parameters influencing the system performance . The Wave-to-Wire (WtW) time-domain model comprises an energy capture chamber, an impulse turbine, and a PMSG, facilitating accurate output power predictions, short calculation times, and complete process coupling. Validation experiments of an OWC positioned at the energy focused point of a parabolic wall, performed using various wave conditions, including regular and irregular waves, demonstrate strong consistency between the numerical and physical models. This study reveals the damping mechanism of the generator on the OWC system, where the generator generates an electromagnetic torque resisting its movement, when driven by mechanical torque . The model evaluates the output power and conversion efficiency each energy conversion stage. When the incident wave height is 0.075 m, the average electrical power can reach a maximum of 11.2 W, and the overall wave-to-wire conversion efficiency can reach 98 % in the particular experimental configuration investigated. The developed predictive model can be used as a valuable tool for designing effective OWC-WEC-WtW systems.
S
SunView 深度解读
该波浪能转换系统的Wave-to-Wire全链路建模方法对阳光电源ST系列储能变流器和新能源并网系统具有重要借鉴价值。其永磁同步发电机(PMSG)与双向涡轮耦合控制策略可应用于我司储能PCS的双向功率变换优化,特别是电磁阻尼机制对提升VSG虚拟同步发电机控制算法的暂态响应性能有启发意义。98%的高转换效率验证了多级能量转换中的损耗控制方法,可用于优化SG系列逆变器的MPPT算法和三电平拓扑效率。该时域仿真建模思路适用于iSolarCloud平台的预测性维护功能开发,提升海洋能等新型可再生能源接入的功率预测精度。