水电系统规划中河流流量变化的可靠性影响

F. Fang, R. Karki
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引用次数: 2

摘要

水力发电系统中河流流量特性的可变性和不确定性给规划足够的发电容量以维持目标可靠性水平带来了相当大的挑战。与其他稳定的发电方式不同,水力发电受到季节性和气候变化的限制。这些公用事业面临着在高流入季节或低负荷时期因水溢出造成的能源浪费。另一方面,它们的发电能力不足以满足高峰负荷期或低入流期的负荷。如何合理地管理和利用水电资源,以保持或提高水电系统的可靠性,对水电优势公用事业具有十分重要的意义。以能源为基础的公用事业公司还关注它们应采用的适当可靠性标准,以便充分掌握基于水文特征的能源管理。本文提出了径流型和大型蓄能型水电站的可靠性模型,以识别其能量和容量特征,并提出了一种纳入水管理策略以提高水力优势电力系统可靠性的方法。研究中还对NERC推荐的可靠性标准在能源型水电主导系统中的适用性进行了评价和讨论。本文使用IEEE可靠性测试系统对河流流量变化、负荷不确定性以及与负荷水平和流入限制协调的维护计划的可靠性影响进行了评估,该系统经过修改以创建水力优势系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability Implications of Riverflow Variations in Planning Hydropower Systems
The variability and uncertainty with river flow characteristics in hydro-dominant power systems create considerable challenges in planning adequate generation capacity to maintain a target level of reliability. Unlike other firm capacity generation sources, hydropower sources are energy-limited by seasonal and climactic variability in water restrictions. These utilities face energy wastage caused by water spillage during high inflow season or low load period of the day. On the other hand, they have inadequate generation capacity to meet the load during peak load period or low inflow season. It becomes very important for hydro dominant utilities to properly manage and utilize their water resource to maintain or enhance the system reliability. Energy-based utilities are also concerned on the suitable reliability criteria they should use to fully capture energy management based on hydrological characteristics. This paper presents reliability models of run-of-river and large storage-type hydro plants to recognize their energy and capacity characteristics and proposes a methodology to incorporate water management strategies for reliability enhancement of hydro dominant power systems. The usefulness of NERC recommended reliability criterion in energy-based hydro dominant system has also assessed and discussed in the studies. The reliability impacts of proposed methodology with river flow variations, load uncertainty and maintenance schedule coordination with load levels and inflow restrictions are evaluated using the IEEE Reliability Test System that is modified to create a hydro dominant system.
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