首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >PETERHEAD POWER STATION - PARALLEL REPOWERING INNOVATIVE STEAM TURBINE ENHANCEMENT
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PETERHEAD POWER STATION - PARALLEL REPOWERING INNOVATIVE STEAM TURBINE ENHANCEMENT

机译:PETERHEAD电站-并行改造创新型汽轮机增强

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In the year 2000 one of Europe's most flexible power stations was commissioned by the authors' company. The existing fossil fired power station was modified by a "Parallel Repowering". With that concept three gas turbines (GT) in combination with three heat recovery steam generators (HRSG) were tied-in additionally to the fired boiler. This concept is compelling especially for large steam power plants and offers more flexibility than "Full Repowering" in matching GTs with the existing steam turbine (ST). The key to maintaining reliability of the repowered unit is the ST modernisation. Plant operability enhancements provide the flexibility of the fired boiler and ST for load following and peaking purposes. The authors' company was responsible for the complete conversion of the fossil fired power station into a modern combined cycle unit. This comprises the tie-in of new steam pipes, bypass stations and the upgrade of the steam turbine auxiliaries as well as the implementation of a new automation system parallel to the existing one. The "Parallel Repowering" offers a maximum of operation variations: 1. Conventional (Rakine cycle) mode 2. Open cycle mode (only GT) 3. Combined cycle mode 4. Hybrid mode. The non-OEM steam turbine needed to be modified for the combined cycle operation with GTs. The condenser load had to be kept as low as possible because of the existing condenser design. Auxiliary systems like the gland steam system and the drain system had to be modified for all different operating modes. Special design features, like the IP rotor cooling system and the flange heating system, had to be extended to operate under all circumstances. One essential difference to the existing operational mode is the necessity of a steam bypass operation. Existing cold reheat (CRH) piping is of carbon steel, so the ST needs to be started with an isolated HP cylinder. The following modifications for the HP turbine were necessary: 1. For the isolated HP cylinder operation non-return valves (NRV) were built into the CRH line at the HP turbine exhaust. 2. The HP cylinder will be automatically isolated by closure of the HP valves and the non-return valves in the CRH line, and the simultaneous opening of the HP vent line. 3. As no instrumentation was available for a reliable monitoring of the isolated operation, a controlled reverse flow from the CRH to the HP vent line was established. 4. The HP cylinder evacuation is controlled by a dedicated control logic.
机译:作者公司在2000年委托了欧洲最灵活的电站之一。现有的化石燃料发电厂通过“并联加电”进行了改造。通过这种概念,将三台燃气轮机(GT)与三台热量回收蒸汽发生器(HRSG)结合在一起,并附加到了燃烧锅炉上。该概念特别适用于大型蒸汽发电厂,并且在将GT与现有蒸汽轮机(ST)匹配时提供了比“完全重新供电”更大的灵活性。保持翻新机组可靠性的关键是ST现代化。工厂可操作性的增强为负荷跟踪和调峰目的提供了燃烧锅炉和ST的灵活性。作者的公司负责将化石燃料发电站完全转换为现代联合循环机组。这包括新蒸汽管,旁路站的连接以及蒸汽轮机辅助设备的升级,以及与现有系统平行的新自动化系统的实施。 “并联加电”可提供最大的运行变化:1.常规(常规循环)模式2.开放式循环模式(仅GT)3.联合循环模式4.混合模式。非OEM汽轮机需要进行修改,以便与GT联合循环运行。由于现有的冷凝器设计,冷凝器负载必须保持尽可能低。对于所有不同的运行模式,必须修改辅助系统,例如压盖蒸汽系统和排水系统。 IP转子冷却系统和法兰加热系统等特殊设计功能必须进行扩展才能在所有情况下运行。与现有操作模式的一个本质区别是必须进行蒸汽旁路操作。现有的冷再热(CRH)管道是碳钢,因此ST必须使用隔离的高压钢瓶启动。 HP涡轮需要进行以下修改:1.对于隔离的HP气缸操作,在HP涡轮排气口的CRH管线中内置有止回阀(NRV)。 2.通过关闭CRH管路中的HP阀和止回阀,并同时打开HP排气管路,将自动隔离HP气缸。 3.由于没有仪器可用于可靠地监测隔离操作,因此建立了从CRH到HP排气管的受控逆流。 4.高压汽缸抽气由专用控制逻辑控制。

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