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Investigation on the energy conversion and load control of supercritical circulating fluidized bed boiler units

机译:超临界循环流化床锅炉单元的能量转换和载荷控制研究

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摘要

Load control is the core of the operation control system on power plant units. The energy conversion process is complicated in the supercritical circulating fluidized bed (SCFB) boiler due to the special fluidized combustion type, which also results in the large thermal inertia. So the control performances of conventional load control scheme without the consideration of carbon storage are poor in SCFB units. To reveal and monitor the energy storage in the boiler, the control model of burning carbon is established. Through the analysis on energy conversion process, the signal of advanced dynamic heat is structured to characterize the variation trend of energy. Based on the combination of the burning carbon control model and the dynamic heat signal, the boiler main control and feed-water control schemes are designed to optimal the control performance. Finally, the verification and application on the 600 MW SCFB unit prove the effectiveness of advanced dynamic heat signal and feasibility of the proposed control scheme. (C) 2018 Elsevier Ltd. All rights reserved.
机译:负载控制是电厂单元上运行控制系统的核心。由于特殊流化燃烧型,能量转换过程在超临界循环流化床(SCFB)锅炉中复杂化,这也导致大的热惯性。因此,在不考虑碳储存的情况下,传统负载控制方案的控制性能在SCFB单元中差。为了揭示和监控锅炉中的储能,建立了燃烧碳的控制模型。通过对能量转换过程的分析,先进的动态热量的信号构成为表征能量的变化趋势。基于燃烧的碳控制模型和动态热信号的组合,锅炉主控制和进料水控制方案旨在最佳控制性能。最后,600 MW SCFB单元的验证和应用证明了提出控制方案的先进动态热信号的有效性和可行性。 (c)2018年elestvier有限公司保留所有权利。

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