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Buffering intermittent renewable power with hydroelectric generation: A case study in California

机译:用水力发电缓冲间歇性可再生能源:加利福尼亚的案例研究

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Hydroelectric generation has the ability to buffer intermittent renewable generation. The objective of this paper is to explore the changing roles of hydropower and pumped storage dispatch in response to increasing renewable penetrations. A novel aggregate model of hydro resources in the state of California is used in conjunction with the Holistic Grid Resource Integration and Deployment model (HiGRID), a modeling tool that resolves hourly grid resource dispatch and management, to observe the impacts of increasing renewable penetration. The effects on the grid are explored by incrementally increasing the installed wind and solar capacity to meet the electric demand for California while re-dispatching hydro energy and capacity resources to balance the electrical power system. Increasing renewable generation results in increased periods of over generation, reducing the practical achievable renewable penetration. By adjusting the dispatch of hydropower to complement renewable generation a significant increase in the achievable renewable penetration can be implemented (8.0% for solar only, 2.2% for wind only and 2.8% for 50/50 mixture of wind and solar). Additionally, dispatching hydro to support renewables serves to increase the system-wide capacity factor, delay the onset of curtailment, and reduce the total curtailment at corresponding renewable penetrations.
机译:水力发电具有缓冲间歇性可再生发电的能力。本文的目的是探索水电和抽水蓄能调度的角色变化,以响应可再生能源渗透率的提高。加利福尼亚州的新型水资源综合模型与整体网格资源整合和部署模型(HiGRID)结合使用,该模型工具可解决每小时的网格资源分配和管理问题,以观察可再生能源渗透率提高的影响。通过逐步增加已安装的风能和太阳能容量以满足加利福尼亚的电力需求,同时重新分配水能和容量资源以平衡电力系统,来探索对电网的影响。可再生能源发电量的增加导致超额发电期的增加,从而降低了实际可实现的可再生能源渗透率。通过调整水电调度以补充可再生能源,可以实现可再生能源普及率的显着提高(仅太阳能为8.0%,仅风能为2.2%,风能和太阳能的50/50混合比为2.8%)。此外,调度水力以支持可再生能源有助于增加整个系统的容量因子,延迟削减的开始,并减少相应可再生能源渗透的总削减。

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