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Heating System Modification Schemes for Heat-Power Decoupling of Cogeneration Unit and Economic Analysis

机译:热电单位热功率去耦和经济分析的加热系统改性方案

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Focusing on solving the interference of the heating supply and power generation under relatively high heating load conditions, heating-power decoupling of the cogeneration units can lower the power output of the generation units to a great extent while meeting the external heating load requirement. With its distinctive advantage of low investment, the solution of the existing heating steam system modification is strongly recommended for increasing the flexibility of the cogeneration unit. Model-based software is utilized for the performance simulation of the 300MW subcritical cogeneration unit manufactured by STC under various heating steam modification schemes. Three possible heating steam modification schemes are considered in the modeling building-up process, and the critical operation parameters and limits are explained for the modification schemes. The high pressure supplement steam is taken from the IP turbine inlet hot reheat steam and HP turbine exhaust cold reheat steam and No.4 steam extraction respectively for Scheme No.1, No.2 and No.3. The results of the minimum power loading capability under maximum heating load condition are calculated. It is shown that with the increase of the proportion of the high pressure steam, the minimum load that could be reached is decreased while maintaining the maximum heating load. From the point view of the peak load adjustment improvement, scheme No.1 has apparent and significant effect and scheme No.2 has average and moderate effect while scheme No.3 has the worst effect. The performance data of the unit is also provided for the various modification schemes. It's shown that the unit performance under 200t/h IP inlet heating steam condition in scheme No.1 is very close to the 75% heating load condition of the original IP-LP crossover piping heating steam scheme.
机译:专注于在相对高的加热负载条件下解决加热供应和发电的干扰,热电联产单位的加热功率去耦可以在很大程度上降低了产生单元的功率输出,同时满足外部加热负载要求。凭借其低投资的独特优势,强烈建议强烈建议采用现有加热蒸汽系统改性的解决方案,以提高热电联产单位的灵活性。基于模型的软件用于在各种加热蒸汽改性方案下STC制造的300MW亚临界热电部的性能模拟。在建模构建过程中考虑了三种可能的加热蒸汽修改方案,并对修改方案说明了关键操作参数和限制。高压补充蒸汽分别取自IP汽轮机入口热再热再热再热再热再热再热再热再加热再热再热再加热蒸汽和No.4蒸汽萃取,用于方案No.1,No.2和No.3。计算最大加热负载条件下的最小功率负载能力的结果。结果表明,随着高压蒸汽比例的增加,可以在保持最大加热负荷的同时降低可以达到的最小载荷。从峰值负荷调节改进的点视图,方案No.1具有明显的效果,方案No.2具有平均和中等的效果,而计划No.3具有最糟糕的效果。还提供了各种修改方案的单元的性能数据。结果表明,在方案1号中的200T / H IP入口加热蒸汽条件下的单元性能非常接近原始IP-LP交叉管道加热蒸汽方案的75%加热负载条件。

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