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Wind Integration Into Various Generation Mixtures

机译:将风集成到各种发电混合物中

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A load balance model is used to quantify the economic and environmental effects of integrating wind power into three typical generation mixtures. System operating costs over a specified period are minimized by controlling the operating schedule of the existing power generating facilities for a range of wind penetrations. Unlike other studies, variable generator efficiencies, and thus variable fuel costs, are taken into account, as are the ramping constraints on thermal generators. Results indicate that the system operating cost will increase by 83%-280% (pending generation mixture) at a wind penetration of 100% of peak demand. System emissions also decrease by 13%-32% (depending on the generation mixture) at a wind penetration of 100%. This leads to emission abatement costs in the range of $1300/ tonne-CO_2e for hydro dominated mixtures, $240/tonne-CO_2e for coal dominated mixtures, and $215/ tonne-CO_2e for natural gas dominated mixtures.
机译:负载平衡模型用于量化将风能整合为三种典型发电混合物的经济和环境影响。通过控制现有发电设备在一定范围的风速下的运行计划,可以将指定期间内的系统运行成本降至最低。与其他研究不同的是,要考虑可变的发电机效率,从而要考虑可变的燃料成本,以及对热力发电机的斜坡约束。结果表明,在风能达到峰值需求的100%时,系统运行成本将增加83%-280%(待处理的混合气)。在100%的风穿透率下,系统排放也减少了13%-32%(取决于发电混合物)。这导致以水为主导的混合物的减排成本在$ 1300 /吨CO_2e的范围内,以煤炭为主导的混合物的排放减排成本为$ 240 / tCO_2e,以天然气为主导的混合物的减排成本为$ 215 / tCO_2e。

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