...
首页> 外文期刊>Energy >Analysis of the impact of gas turbine modifications in integrated gasification combined cycle power plants
【24h】

Analysis of the impact of gas turbine modifications in integrated gasification combined cycle power plants

机译:燃气轮机改造对整体气化联合循环电厂的影响分析

获取原文
获取原文并翻译 | 示例
           

摘要

In an 1GCC (integrated gasification combined cycle) plant, the operating environment of the gas turbine (GT) deviates from the design conditions due to its integration with both the gasifier and the air separation unit (ASU). In particular, a trial to design the entire system with low GT-ASU integration would cause a decrease in the compressor surge margin and the turbine blade overheating. In this study, modification of the turbine and compressor to avoid a decrease in the surge margin and overheating was simulated, and the result was compared with the case without modification. The entire IGCC plant was modeled and the full off-design operation of the gas turbine was simulated. Under-firing and a decrease in dilution nitrogen can mitigate the two problems without component modification but inevitably cause a considerable performance penalty in the low integration degree regime. Both turbine modification (annulus area increase) and compressor modification (increase in the surge pressure ratio) enabled a continuous increase in power and efficiency with decreasing integration degree. In the very low integration degree regime, the power benefits of the two modifications were similar and considerable. A sensible power boost can be achieved if the turbine coolant modulation can be adopted instead of under-firing in modification strategies.
机译:在1GCC(整体气化联合循环)工厂中,由于燃气轮机与气化器和空气分离单元(ASU)集成在一起,因此其燃气轮机(GT)的运行环境偏离了设计条件。尤其是,尝试以低GT-ASU集成度设计整个系统会降低压缩机喘振裕度和涡轮叶片过热。在本研究中,模拟了涡轮和压缩机的改型以避免喘振裕度和过热的减小,并将结果与​​未改型的情况进行了比较。对整个IGCC工厂进行了建模,并对燃气轮机的整个非设计运行进行了模拟。点火不足和稀释氮的减少可以缓解两个问题,而无需更改组件,但在低集成度方案中不可避免地会导致相当大的性能损失。涡轮改型(环面面积增加)和压缩机改型(喘振压力比增加)都使功率和效率不断提高,而集成度却降低了。在非常低的集成度条件下,这两种修改的功效是相似且可观的。如果可以采用涡轮冷却剂调节方式来代替改进策略中的点火不足,则可以实现合理的功率提升。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号