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Ydinvoiman ja muiden konventionaalisten voimaloiden rooli mukautuvassa energiajärjestelmässä

机译:核电和其他常规电厂在自适应能源系统中的作用

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摘要

This thesis reviews the role of nuclear and conventional power plants in the future energy system. The review is done by utilizing freely accesible publications in addition to generating load duration and ramping curves for Nordic energy system. As the aim of the future energy system is to reduce GHG-emissions and avoid further global warming, the need for flexible power generation increases with the increased share of intermittent renewables. The goal of this thesis is to offer extensive understanding of possibilities and restrictions that nuclear power and conventional power plants have regarding flexible and sustainable generation.As a conclusion, nuclear power is the only technology that is able to provide large scale GHG-free power output variations with good ramping values. Most of the currently operating plants are able to take part in load following as the requirement to do so is already required to be included in the plant design. Load duration and ramping curves produced prove that nuclear power is able to cover most of the annual generation variation and ramping needs in the Nordic energy system.From the conventional power generation methods, only biomass combustion can be considered GHG-free because biomass is considered carbon neutral. CFB combusted biomass has good load follow capabilities in good ramping and turndown ratios. All the other conventional power generation technologies generate GHG-emissions and therefore the use of these technologies should be reduced.
机译:本文回顾了核电厂和常规电厂在未来能源系统中的作用。除生成北欧能源系统的负载持续时间和斜坡曲线外,还通过利用可免费获取的出版物进行审查。未来能源系统的目标是减少温室气体排放并避免进一步的全球变暖,因此,随着间歇性可再生能源份额的增加,对灵活发电的需求也随之增加。本文的目的是要广泛了解核电和常规发电厂在灵活和可持续发电方面的可能性和局限性。总之,核电是唯一能够提供大规模无温室气体输出的技术。具有良好的斜坡值的变化。当前运行中的大多数工厂都能够参与负荷跟踪,因为要求这样做已经包含在工厂设计中。负载持续时间和上升曲线证明了核能能够满足北欧能源系统的大部分年发电量变化和上升需求。从传统的发电方法来看,只有生物质燃烧被视为无温室气体,因为生物质被视为碳。中性。 CFB燃烧的生物质具有良好的负荷跟随能力,并具有良好的斜率和调节比。所有其他常规发电技术都会产生温室气体排放,因此应减少这些技术的使用。

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    Savolainen Aleksi;

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  • 年度 2015
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