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Integrating Renewable and Nonrenewable Energies in Power Plant Planning | Science Publications

机译:在电厂规划中整合可再生能源和不可再生能源科学出版物

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> Problem statement: Electricity can be generated from different type of technologies such as fossil and non-fossil power plants. Among these technologies, coal-fired power plants have been a major route for electricity generation. Recently, environmental constraints were imposed over the coal power plant operations in order to reduce their emissions. Besides, renewable energy power plants such as hydroelectric, wind, solar and geothermal have emerged with a potential of low impact on the environment. Approach: In this study, coal-fired power plants with a mix of low emission power plants were analyzed from the viewpoint of coal power plant emission reductions while supplying electricity demand. Electricity capacity expansion was also included within the problem to insure sufficient electricity supply in circumstances of emission reduction constraints. Results: Pollutants such as Nitrogen Oxides (NOx), Sulfur Oxides (SOx) and mercury (Hg) were assumed to be the target compounds. A discrete mathematical programming model was formulated to give an assessment about the coal-fired power plant operations in an electricity generation network. Different scenarios of increased electricity demand and emission reduction targets were applied on Ontario Power Generation (OPG) network to give an illustration of the proposed model. Conclusion: The case study results show the significant impact of combining renewable energy or zero emission technologies on the optimal operation of a network that combines coal-fired power plants.
机译: > 问题陈述:可以通过化石和非化石发电厂等不同类型的技术来发电。在这些技术中,燃煤电厂一直是发电的主要途径。最近,对燃煤电厂的运行施加了环境限制,以减少其排放。此外,水力发电,风能,太阳能和地热等可再生能源发电厂已出现,对环境的影响很小。 方法:在本研究中,从满足电力需求的燃煤电厂排放减少的角度分析了混合了低排放电厂的燃煤电厂。问题还包括扩大电容量,以确保在减少排放的情况下有足够的电力供应。 结果:假设污染物为氮氧化物(NO x ),硫氧化物(SO x )和汞(Hg)化合物。制定了离散的数学规划模型,以评估发电网络中燃煤电厂的运行情况。在安大略省发电(OPG)网络上应用了不同的电力需求增加和减排目标的方案,以说明该模型。 结论:案例研究结果表明,将可再生能源或零排放技术相结合对结合燃煤电厂的网络的最佳运行具有重大影响。

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