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Thermodynamic and economic analysis of nuclear power unit operating in partial cogeneration mode to produce electricity and district heat

机译:核电部分热电联产发电和区域供热的热力学和经济分析

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This paper presents the methodology of techno-economic analysis for a nuclear unit operating in partial cogeneration mode and its application for the case study: a nuclear power plant planned in Poland. The research objectives were: to propose EPR, AP1000 and ESBWR nuclear condensing-extraction turbine systems modifications required for operation in cogeneration, to determine optimal heat production and heat transport line (HTL) parameters, to evaluate the technological feasibility of proposed solutions, to analyze profitability and competitiveness of the system versus coal-fired technologies. To adapt nuclear turbine to operation in partial cogeneration mode, the steam must be extracted from low-pressure (LP) section of the turbine and crossover pipe connecting high-pressure (HP) or intermediate-pressure (IP) section with LP section. Thermodynamic analysis proved that the operation of nuclear power plant at peak thermal load up to 250 MW neither requires to change primary cycle arrangements of considered nuclear units nor thermal capacities of nuclear reactors. Total annual costs of nuclear power plant operating in partial cogeneration were the lowest of all considered heat and power options, with all types of reactors, for the emission allowance price of 27 EOM CO2-eq. The specific cost of heat from nuclear cogeneration option was 10.3-12.7 EUR/GJ. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了部分热电联产模式下运行的核装置的技术经济分析方法及其在案例研究中的应用:波兰计划建造的核电站。研究目标是:提出热电联产运行所需的EPR,AP1000和ESBWR核冷凝-抽汽涡轮系统的改造,确定最佳的热量产生和传热线(HTL)参数,评估所提出解决方案的技术可行性,进行分析该系统相对于燃煤技术的盈利能力和竞争力。为了使核能涡轮机在部分热电联产模式下运行,必须从涡轮机的低压(LP)部分和将高压(HP)或中压(IP)部分与LP部分相连的跨接管中抽出蒸汽。热力学分析证明,在峰值热负荷高达250兆瓦的条件下,核电厂的运行既不需要改变考虑的核装置的主循环安排,也不需要改变核反应堆的热容量。对于所有类型的反应堆来说,部分热电联产运营的核电厂的年度总成本是所有考虑的热电选项中最低的,其排放配额价格为27 EOM CO2-eq。核电热电联产选项产生的热能单位成本为10.3-12.7 EUR / GJ。 (C)2017 Elsevier Ltd.保留所有权利。

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