首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >UTILIZATION OF A THERMO-MECHANICAL MODEL COUPLED WITH MULTI-OBJECTIVE OPTIMIZATION TO ENHANCE THE START-UP PROCESS OF SOLAR STEAM TURBINES
【24h】

UTILIZATION OF A THERMO-MECHANICAL MODEL COUPLED WITH MULTI-OBJECTIVE OPTIMIZATION TO ENHANCE THE START-UP PROCESS OF SOLAR STEAM TURBINES

机译:结合多目标优化的热力模型用于增强太阳能汽轮机的启动过程

获取原文
获取外文期刊封面目录资料

摘要

The need to mitigate the climate change has brought in the last years to a fast rise of renewable technologies. The inherent fluctuations of the solar resource make concentrating solar power technologies an application that demands full flexibility of the steam turbine component. A key aspect of this sought steam turbine flexibility is the capability for fast starts, in order to harvest the solar energy as soon as it is available. However, turbine start-up time is constrained by the risk of low cycle fatigue damage due to thermal stress, which may bring the machine to failure. Given that the thermal limitations related to fatigue are temperature dependent, a transient thermal analysis of the steam turbine during start process is thus necessary in order to improve the start-up operation. This work focuses on the calculation of turbine thermo-mechanical properties and the optimization of different start-up cases in order to identify the best solution in terms of guaranteeing reliable and fast start-ups. In order to achieve this, a finite element thermal model of a turbine installed in a concentrating solar power plant was developed and validated against measured data. Results showed relative errors of temperature evolutions below 2%, making valid the assumptions and simplifications made. Since there is trade-off between start-up speed and turbine lifetime consumption, the model was then implemented within a multi-objective optimization scheme in order to test and design faster start-ups while ensuring safe operation of the machine. Significant improvements came up in terms of start-up time reduction up to 30% less than the standard start-up process.
机译:近年来,缓解气候变化的需求使可再生技术迅速崛起。太阳能的内在波动使集中太阳能技术成为需要蒸汽轮机组件具有充分灵活性的应用。所寻求的蒸汽轮机灵活性的一个关键方面是快速启动的能力,以便尽快获得太阳能。但是,由于热应力而导致的低周疲劳损坏风险限制了涡轮机的启动时间,这可能会使机器故障。鉴于与疲劳有关的热限制取决于温度,因此在启动过程中需要对蒸汽轮机进行瞬态热分析,以改善启动操作。这项工作专注于涡轮机热机械性能的计算和不同启动情况的优化,以便在确保可靠和快速启动方面确定最佳解决方案。为了实现这一目标,开发了安装在聚光太阳能发电厂中的涡轮机的有限元热模型,并根据测量数据进行了验证。结果表明,温度变化的相对误差低于2%,这使所作的假设和简化有效。由于在启动速度和涡轮寿命消耗之间需要权衡,因此在多目标优化方案中实施了该模型,以便测试和设计更快的启动,同时确保机器安全运行。与标准启动过程相比,启动时间减少了多达30%,从而带来了显着的改进。

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