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首页> 外文期刊>Regional Environmental Change >Integrated hydro- and wind power generation: a game changer towards environmental flow in the Sub-middle and Lower Sao Francisco River Basin?
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Integrated hydro- and wind power generation: a game changer towards environmental flow in the Sub-middle and Lower Sao Francisco River Basin?

机译:一体化的水力发电和风能发电:改变圣弗朗西斯科州中下游地区环境流量的游戏规则?

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摘要

Many renewable resources for the generation of electricity, such as hydropower and wind power, are dependent on climatic factors. Reservoirs have been created to overcome the stochastic nature of river flows and to make water supply more reliable. However, reservoirs are affecting the ecological status of river ecosystems, e.g., by modifying the flow regime, triggering discussions regarding the discharge of reservoirs. In Brazil’s northeast region, the installed capacity for wind power generation has increased substantially in recent years. Setting up a modeling system for simulating wind power and hydropower generation in this study, it is analyzed whether wind power generation, peaking in the dry season, can help to achieve a more environmentally oriented flow regime in the Sub-middle and Lower São Francisco River Basin. Simulated higher discharges from reservoirs during the rainy season and lower discharges during the dry season, representing a more natural flow regime, will reduce hydropower generation in the dry season. Under recent conditions, the resulting gap in electricity generation can only be partially covered by wind power. A large share needs to be generated by thermal power plants or be imported from other regions in Brazil. The planned future increase in installed wind power capacity can change this picture; the demand for electricity generated by thermal power plants and imported will decrease. Adopting an integrated approach for hydropower and wind power generation, the flow regime in the Sub-middle and Lower São Francisco River Basin can be modified to improve the ecological status of the river system.
机译:用于发电的许多可再生资源,例如水力发电和风力发电,都取决于气候因素。建立水库是为了克服河流的随机性,并使供水更加可靠。但是,水库正在影响河流生态系统的生态状况,例如,通过修改水流状态,引发有关水库流量的讨论。在巴西的东北地区,近年来风力发电的装机容量已大大增加。在这项研究中,建立了一个模拟风能和水力发电的建模系统,分析了在枯水期达到峰值的风能发电是否可以帮助在圣弗朗西斯科中下游地区实现更面向环境的流动状态盆地。在雨季模拟水库较高的排放量,而在旱季模拟水库的较低排放量,这代表了更自然的水流状态,将减少旱季的水力发电。在最近的情况下,风力发电只能部分弥补由此产生的发电缺口。很大一部分需要由火力发电厂产生或从巴西其他地区进口。计划中的未来已安装的风力发电容量的增加可以改变这种状况;火力发电厂和进口电力的需求将减少。通过采用水电和风力发电的综合方法,可以修改圣弗朗西斯科中下游地区的水流状况,以改善河流系统的生态状况。

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