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首页> 外文期刊>International Journal of Greenhouse Gas Control >Flexible operation of coal fired power plant integrated with post combustion CO2 capture using model predictive control
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Flexible operation of coal fired power plant integrated with post combustion CO2 capture using model predictive control

机译:使用模型预测控制捕获燃煤电厂的燃煤电厂灵活运行

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摘要

The growing demand for CO2 capture from coal-fired power plant (CFPP) has increased the need to improve the dynamic operability of the integrated power generation-CO2 capture plant. Nevertheless, high-level operation of the entire system is difficult to achieve due to the strong interactions between the CFPP and post combustion CO2 capture (PCC) unit. In addition, the control tasks of power generation and CO2 removal are in conflict, since the operation of both processes requires consuming large amount of steam. For these reasons, this paper develops a model for the integrated CFPP-PCC process and analyzes the dynamic relationships for the key variables within the integrated system. Based on the investigation, a centralized model predictive controller is developed to unify the power generation and PCC processes together, involving the key variables of the two systems and the interactions between them. Three operating modes are then studied for the predictive control system with different focuses on the overall system operation; power generation demand tracking and satisfying the CO2 capture requirement. The predictive controller can achieve a flexible operation of the integrated CFPP-PCC system and fully exert its functions in power generation and CO2 reduction.
机译:从燃煤发电厂(CFPP)对二氧化碳捕获的需求不断增长,提高了提高集成发电 - 二氧化碳捕获工厂的动态可操作性的需要。然而,由于CFPP和后燃烧CO2捕获(PCC)单元之间的强相互作用,难以实现整个系统的高级操作。此外,发电和CO2去除的控制任务处于冲突中,因为两个过程的操作需要消耗大量的蒸汽。出于这些原因,本文开发了集成的CFPP-PCC过程的模型,并分析了集成系统内的关键变量的动态关系。基于研究,开发了一种集中式模型预测控制器以将发电和PCC过程统一,涉及两个系统的关键变量和它们之间的相互作用。然后针对整体系统操作对预测控制系统进行了三种操作模式,采用不同的专注于整体系统操作;发电需求跟踪和满足二氧化碳捕获要求。预测控制器可以实现集成的CFPP-PCC系统的灵活操作,并充分发挥其在发电和CO2中的功能。

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