660MW超超临界燃煤机组动态过程基本煤耗特性研究

Junjie Yin, Ming Liu, Junjie Yan, Yongliang Zhao
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引用次数: 0

摘要

随着间歇性可再生能源发电的普及,燃煤发电机组应频繁循环,以平衡供电侧和需求侧的负荷。动态过程燃煤机组的煤耗受热力系统、控制系统、蓄热变化等诸多因素的影响。因此,对动态过程运行的燃煤机组进行能效评价是非常困难的。动态过程中基本煤耗率的确定是评价燃煤机组运行性能的重要依据。本文建立了660MW超超临界燃煤机组的非设计计算模型,并采用设计参数进行了验证。所建立的模型可用于稳态非设计工况下的煤耗率预测。基本煤耗是指运行参数与目标值一致的燃煤机组的煤耗。在计算基本煤耗率时,将负荷循环过程划分为多个短时段,将每个时段视为负荷不变的稳态状态,因此每个时段的煤耗率等于相应稳态状态的煤耗率。推导了负荷循环过程中基本煤耗率的计算公式。在非设计计算模型和理想条件假设的基础上,计算和分析了负荷循环率不变的不同过程的平均煤耗率。结果表明:在初始负荷和最终负荷均确定的情况下,基本煤耗率保持不变,且与负荷循环率无关;在负荷循环幅值不变的情况下,基本煤耗率随着初始负荷的减小而增大。本研究旨在为实际动态过程中的能耗分析提供基准值,并在此基础上进一步开展动态过程中煤耗特性的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Basic Coal Consumption Characteristics in Dynamic Process of 660MW Ultra-Supercritical Coal-Fired Unit
With the spreading of intermittent renewable power, coal-fired power units should cycle frequently to balance the load between power supply side and demand side. Coal consumption of coal-fired units operating in dynamic processes is influenced by many factors, including thermal system, control system, heat storage variation, etc. Therefore, it is very difficult to evaluate the energy efficiency of coal-fired units operating in dynamic processes. It is important to ascertain the basic coal consumption rate in dynamic processes, which is the basis to evaluate the operation performance of coal-fired units. In this study, an off-design calculation model of 660MW ultra-supercritical coal-fired unit is developed and validated with design parameters. The developed model can be used to predict the coal consumption rates under steady-state off-design conditions. The basic coal consumption means the coal consumption of coal-fired units with operating parameters the same as target values. To calculate the basic coal consumption rate, a load cycling process is differentiated into lots of short time periods and every period is regarded as a steady-state condition with constant load, therefore the coal consumption rates in every period are equal to that of the corresponding steady-state condition. The calculation formula of basic coal consumption rates in is derived for load cycling processes. On the basis of the off-design calculation model and assumption of idealized condition, average coal consumption rates during different processes with constant load cycling rates can be calculated and analyzed. Results show that if the initial and final loads are both settled, the basic coal consumption rate remains unchanged and is independent of load cycling rate. If the load cycling amplitude remains unchanged, the basic coal consumption rate increases as the initial load decrease. The study aims to provide benchmark values for the energy consumption analysis in actual dynamic processes, and further study on coal consumption characteristics in dynamic processes will be developed based on it.
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