Extension of the Control Range of Power Units: Problems and Their Solution

IF 0.9 Q4 ENERGY & FUELS Thermal Engineering Pub Date : 2024-05-04 DOI:10.1134/s0040601524030108
E. V. Somova
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Abstract

The modern structure of energy consumption enhances the nonuniformity of electrical load curves. With the more pronounced nonuniformity of daily and weekly electrical energy consumption, the requirements for the maneuverable characteristics of power units, which include the control range of the power unit load (technological minimum) and the minimum safe load of the power unit (technical minimum), become more demanding. Due to the problem of maintenance and adequate passing of the minimum of electrical loads during nighttime periods and nonworking days, large supercritical pressure (SCP) condensing power units had to be engaged in controlling the loads. This situation is topical for the Russian power industry in the absence of semipeak power units. For SCP power units, it is advisable to perform unloading under sliding pressure conditions throughout the entire steam-water path. The depth of unloading depends mainly on the reliability of the boilers, the hydraulic design of whose heating surfaces had been performed without considering operation at subcritical pressure. The possibility of application of sliding pressure unloading for SCP units was determined by ensuring reliable temperature and hydraulic conditions of the boiler heating surfaces, in which the state of the working fluid changed from subcooled water to slightly superheated steam. Unloading of drum boilers requires maintenance of reliable circulation in the furnace waterwalls and safe temperature conditions of the steam superheating surfaces. The results of the tests of various types of gas-and-oil fired once-through and drum boilers with unloading at sliding or rated subcritical pressures are presented. The reliability indicators of the hydraulic paths of the boilers and the factors limiting deep unloading of power units have been analyzed. The minimum safe loads were determined. Technical solutions for deep unloading were proposed for the hydraulic circuits of the steam-generating part of the flow path of SCP boilers.

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扩展动力装置的控制范围:问题及其解决方案
摘要 现代能源消费结构加剧了电力负荷曲线的不均匀性。随着每天和每周电能消耗的不均匀性越来越明显,对动力装置可操控性的要求也越来越高,其中包括动力装置负荷的控制范围(技术最小值)和动力装置的最小安全负荷(技术最小值)。由于夜间和非工作日最低电力负荷的维护和充分通过问题,大型超临界压力(SCP)冷凝机组必须参与负荷控制。在没有半泄压机组的情况下,这种情况是俄罗斯电力行业的热点问题。对于 SCP 发电设备,最好在整个蒸汽-水路径的滑动压力条件下进行卸载。卸载深度主要取决于锅炉的可靠性,因为锅炉受热面的水力设计并未考虑在亚临界压力下运行。在锅炉受热面的温度和水力条件可靠的情况下,工作流体的状态从过冷水变为微过热蒸汽,这就决定了 SCP 机组采用滑压卸载的可能性。汽包锅炉的卸载要求保持炉内水墙的可靠循环和蒸汽过热面的安全温度条件。本文介绍了在滑动压力或额定亚临界压力下卸载的各种类型燃气-燃油直燃锅炉和汽包锅炉的试验结果。分析了锅炉液压路径的可靠性指标和限制动力装置深度卸载的因素。确定了最小安全负荷。针对 SCP 锅炉流路中蒸汽产生部分的液压回路,提出了深度卸载的技术解决方案。
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来源期刊
CiteScore
1.30
自引率
20.00%
发文量
94
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