结合蒸汽喷射器的新型燃煤热电联产系统实现热电解耦和节能

Liu Miaomiao, Ming Liu, Shuran Zhao, Gege Song, Junjie Yan
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摘要

传统的热电联产机组应在热控模式下运行。功率负荷的可调范围受热负荷的限制,最小功率负荷随热负荷的增大而增大。由于间歇性可再生能源的高度渗透,对热电联产机组的运行灵活性提出了很高的要求。为实现热电联产机组的热电解耦,有必要采取一些技术措施。为了寻找一种低投资、高能效的热功率解耦方法,本研究采用结构简单、成本低的蒸汽喷射器设计了一种新型的热功率解耦系统。蒸汽喷射器可以回收汽轮机排汽的余热。因此,蒸汽喷射器一体化可以实现热电解耦和节能并举。设计了三个带蒸汽喷射器的热力解耦系统。以330mw燃煤热电联产机组为参考,研究了这些系统的热功率解耦性能和能耗特性。结果表明,三种改进系统均能实现热电解耦。改进系统III的热电解耦性能最好,改进系统I的发电煤耗率最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Coal-Fired CHP System Integrated With Steam Ejectors to Realize Heat-Power Decoupling and Energy Saving
Traditional combined heat and power (CHP) units should run in the heat-controlled mode. The adjustable range of power load is restricted by the heat load, and the minimum power load increases with the heat load. Because of high penetration of intermittent renewable power, operational flexibility of CHP units is highly required. It is necessary to adopt some technical solutions to realize heat-power decoupling for CHP units. To find a heat-power decoupling method with low investment and high energy efficiency, the steam ejectors, simple in structure and low in cost, are applied to design a novel heat-power decoupling system in this study. Steam ejectors can recover the waste heat of exhaust steam of steam turbines. Therefore, the integration of steam ejector may realize heat-power decoupling and energy saving simultaneously. Three heat-power decoupling systems with steam ejectors are designed. The heat-power decoupling performance and energy consumption characteristics of these systems are investigated with a reference 330 MW coal-fired CHP unit. Results show that all three modified systems can realize heat-power decoupling. The heat-power decoupling performance of improved system III is the best, and improved system I has the least coal consumption rate for power generation.
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