Antonini Enrico G A, Ruggles Tyler H, Farnham David J, Caldeira Ken
Carnegie Institution for Science, Department of Global Ecology, Stanford, CA 94305, USA.
Breakthrough Energy, Kirkland, WA 98033, USA.
iScience. 2022 Mar 22;25(4):104140. doi: 10.1016/j.isci.2022.104140. eCollection 2022 Apr 15.
Wind and solar photovoltaic generators are projected to play important roles in achieving a net-zero-carbon electricity system that meets current and future energy needs. Here, we show potential advantages of long-term site planning of wind and solar power plants in deeply decarbonized electricity systems using a macro-scale energy model. With weak carbon emission constraints and substantial amounts of flexible electricity sources on the grid (e.g., dispatchable power), relatively high value is placed on sites with high capacity factors because the added wind or solar capacity can efficiently substitute for running natural gas power plants. With strict carbon emission constraints, relatively high value is placed on sites with high correlation with residual demand because resource complementarity can efficiently compensate for lower system flexibility. Our results suggest that decisions regarding long-term wind and solar farm siting may benefit from consideration of the spatial and temporal evolution of mismatches in electricity demand and generation capacity.
预计风能和太阳能光伏发电机在实现满足当前和未来能源需求的净零碳电力系统中发挥重要作用。在此,我们使用宏观能源模型展示了在深度脱碳电力系统中风电场和太阳能发电厂长期选址规划的潜在优势。在碳排放限制较弱且电网有大量灵活电源(例如可调度电力)的情况下,容量因子高的场地具有较高价值,因为新增的风能或太阳能容量可以有效替代运行中的天然气发电厂。在严格的碳排放限制下,与剩余需求相关性高的场地具有较高价值,因为资源互补性可以有效弥补系统灵活性较低的问题。我们的结果表明,关于风电场和太阳能农场长期选址的决策可能受益于对电力需求和发电容量不匹配的时空演变的考虑。