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Temporal multiscalar decision support framework for flexible operation of carbon capture plants targeting low-carbon management of power plant emissions

机译:临时性的多尺度决策支持框架,可灵活运行碳捕集电厂,目标是发电厂排放的低碳管理

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A real-time control-optimization framework previously developed across multiple time scales is used for the analysis of power plant net operating revenue when retrofitted with a carbon capture plant. This framework which features high sample frequency commensurate with electricity dispatch and control instrumentation levels is proposed as a decision support tool for flexible operation of the carbon capture plant while considering electricity and carbon price dynamics. This paper presents the results of implementing this framework for operational flexibility of solvent-based post-combustion CO2 capture (PCC) process in response to power plant dynamic loads (load following and unit turndown). An integrated plant (power plant with PCC) subject to forecast 2020 electricity and carbon prices is shown to generate yearly net operating revenue of approximately 12% of the gross revenue. While, the same integrated plant generates net operating revenue loss of roughly 13% under 2011 electricity and carbon prices. These results underpin the strategy that employs the proposed optimization-based control framework for flexible operation of a PCC plant in the year 2020, because such framework captures financial benefits hidden in the dynamics of electricity load, electricity and carbon price trends, and does so at high temporal resolution. (C) 2016 Elsevier Ltd. All rights reserved.
机译:以前在多个时间范围内开发的实时控制优化框架,用于在对碳捕集装置进行改造后,可用于分析电厂的净营业收入。提出了一个具有高采样频率,与电力调度和控制仪器水平相对应的框架,作为在考虑电力和碳价格动态的同时,使碳捕集装置灵活运行的决策支持工具。本文介绍了实现此框架的结果,以响应电厂动态负载(负载跟随和机组调低),实现溶剂基燃烧后二氧化碳捕集(PCC)过程的操作灵活性。根据预测的2020年电价和碳价,综合电厂(具有PCC的电厂)的年净营业收入约占总收入的12%。而同一家综合工厂在2011年电力和碳价下产生的净营业收入损失约为13%。这些结果巩固了采用拟议的基于优化的控制框架在2020年实现PCC电厂灵活运营的策略的战略,因为该框架捕获了电力负荷,电力和碳价格趋势动态中隐藏的财务利益,并且在高时间分辨率。 (C)2016 Elsevier Ltd.保留所有权利。

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