首页> 外文期刊>Proceedings of the ASME Advanced Energy Systems Division >WESTERN WIND AND SOLAR INTEGRATION STUDY HYDROPOWER ANAYSIS: BENEFITS OF HYDROPOWER IN LARGE-SCALE INTEGRATION OF RENEWABLES IN THE WESTERN UNITED STATES
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WESTERN WIND AND SOLAR INTEGRATION STUDY HYDROPOWER ANAYSIS: BENEFITS OF HYDROPOWER IN LARGE-SCALE INTEGRATION OF RENEWABLES IN THE WESTERN UNITED STATES

机译:西部风能和太阳能整合研究水力分析:水力发电在美国可再生能源大规模整合中的优势

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NREL and research partner GE are conducting the Western Wind and Solar Integration Study (WWSIS) in order to provide insight into the costs and operational impacts caused by the variability and uncertainty of wind, photovoltaic, and concentrated solar power employed to serve up to 35percent of the load energy in the WestConnect region (Arizona, Colorado, Nevada, New Mexico, and Wyoming). The heart of the WWSIS is an hourly cost production simulation of the balancing areas in the study footprint using GE's Multi-Area Production Simulation Model (MAPS). The estimated 2017 load being served is 60 GW, with up to 30 GW of wind power and 4 GW of existing hydropower. Because hydropower generators are inherently flexible and often combined with reservoir storage, they play an important role in balancing load with generation. However, these hydropower facilities serve multiple higher priority functions that constrain their use for system balancing. Through a series of comparisons of the MAPS simulations, it was possible to deduce the value of hydropower as an essential balancing resource. Several case comparisons were performed demonstrating the potential benefits of hydro and to ascertain if the modeled data was within the defined hydro parameters and constraints. The results, methodologies, and conclusions of these comparisons are discussed, including how the hydro system is affected by the wind power for different wind forecasts and penetration levels, identifying the magnitude and character of change in generation pattern at each of the selected hydro facilities. Results from this study will focus on the appropriate benefits that hydropower can provide as a balancing resource including adding value to wind and solar and reducing system operating costs to nearly one billion dollars when offsetting more expensive generation systems as large penetration levels of renewable, especially wind power, are introduced to the grid system.
机译:NREL和研究合作伙伴GE正在进行西方风能和太阳能集成研究(WWSIS),以深入了解风能,光伏和集中太阳能发电的可变性和不确定性所带来的成本和运营影响,而风能,光伏发电和集中式太阳能发电所使用的风能达35%。 WestConnect地区(亚利桑那州,科罗拉多州,内华达州,新墨西哥州和怀俄明州)的负载能量。 WWSIS的核心是使用GE的多区域生产模拟模型(MAPS)对研究范围内的平衡区域进行每小时成本生产模拟。估计2017年的服务负荷为60吉瓦,其中风电高达30吉瓦,现有水电达4吉瓦。由于水力发电机具有固有的灵活性,通常与水库相结合,因此它们在平衡负荷与发电量方面发挥着重要作用。但是,这些水电设施具有多个更高优先级的功能,从而限制了它们在系统平衡中的使用。通过对MAPS模拟的一系列比较,可以推断出水电作为基本平衡资源的价值。进行了几个案例比较,以证明水电的潜在好处,并确定建模数据是否在定义的水电参数和约束范围内。讨论了这些比较的结果,方法和结论,包括不同的风能预测和渗透水平对水力系统的影响如何,确定每个选定水力发电设施的发电方式变化的幅度和特征。这项研究的结果将侧重于水电作为平衡资源所能提供的适当利益,包括增加风能和太阳能的价值,以及在抵消更昂贵的发电系统(可再生能源,尤其是风能的普及程度)时,将系统运营成本降低至近十亿美元。电力,引入电网系统。

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