一种用于核动力蒸汽电厂的供热一体化储能系统

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
James W Lazenby, Eugene Shwageraus, Alexander J White
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引用次数: 0

摘要

本文对核动力蒸汽装置给水加热系统与蓄热装置相结合的蓄热装置概念进行了热力学分析。这使得发电厂的电力输出可以灵活调整,同时保持恒定的反应堆功率,从而提供相当于电力存储系统的电力,并促进核电站采用负荷跟随作用。这个概念属于“发电集成能源存储”的范畴,它利用发电所需的现有硬件来降低存储成本,并且与“电进电出”形式的存储相比,还可以从更少的能源转换中获益。这意味着可以以低成本实现高(有效)的往返效率。所提出的系统的一个重要特征是涡轮排流(在不同的压力和温度下)自动提供与给水温度曲线的良好热匹配,因此热量最终可以以高的火用效率从显热储热介质中传递。讨论了热储存的各种选择,包括压力水箱,热油和填充床。分析还包括考虑循环部件的非设计行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A feedheat-integrated energy storage system for nuclear-powered steam plant
The paper provides thermodynamic analysis of an energy storage concept in which thermal stores are coupled with the feedwater heating train of nuclear-powered steam plant. This allows the electrical output of the plant to be flexed whilst maintaining constant reactor power, thereby providing the equivalent of an electricity storage system and facilitating the adoption of a load-following role for nuclear plant. The concept falls under the umbrella of ‘generation-integrated energy storage’, which exploits existing hardware required for generation to reduce storage costs, and benefits also from fewer energy transformations when compared to ‘electricity-in-electricity-out’ forms of storage. This means that a high (effective) round-trip efficiency can be achieved at low cost. An important feature of the proposed system is that the turbine bleed flows (at their various pressures and temperatures) automatically provide good thermal matching with the feedwater temperature profile, so that heat can ultimately be transferred to and from sensible-heat thermal-storage media with high exergetic efficiency. Various options are discussed for the thermal stores, including pressurised water tanks, thermal oils and packed beds. The analysis also includes consideration of the off-design behaviour of cycle components.
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来源期刊
CiteScore
3.30
自引率
5.90%
发文量
114
审稿时长
5.4 months
期刊介绍: The Journal of Power and Energy, Part A of the Proceedings of the Institution of Mechanical Engineers, is dedicated to publishing peer-reviewed papers of high scientific quality on all aspects of the technology of energy conversion systems.
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