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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Investigation Into the Thermal Limitations of Steam Turbines During Start-Up Operation
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Investigation Into the Thermal Limitations of Steam Turbines During Start-Up Operation

机译:汽轮机启动过程中的热极限研究

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摘要

Liberalized electricity market conditions and concentrating solar power technologies call for increased power plant operational flexibility. Concerning the steam turbine (ST) component, one key aspect of its flexibility is the capability for fast starts. In current practice, turbine start-up limitations are set by consideration of thermal stress and low cycle fatigue. However, the pursuit of faster starts raises the question whether other thermal phenomena can become a limiting factor to the start-up process. Differential expansion (DE) is one of such thermal properties, especially since the design of axial clearances is not included as part of start-up schedule design and because its measurement during operation is often limited or not a possibility at all. The aim of this work is to understand DE behavior with respect to transient operation and to quantify the effect that such operation would have in the design and operation of axial clearances. This was accomplished through the use of a validated thermomechanical model that was used to compare DE behavior for different operating conditions of the machine. These comparisons showed that faster starts do not necessarily imply that wider axial clearances are needed, which means that the thermal flexibility of the studied turbine is not limited by DE. However, for particular locations, it was also obtained that axial rubbing can indeed become a limiting factor in direct relation to start-up operation. The resulting approach presented in this work serves to avoid over-conservative limitations in both design and operation concerning axial clearances.
机译:自由化的电力市场条件和集中的太阳能技术要求提高电厂的运营灵活性。关于蒸汽轮机(ST)组件,其灵活性的一个关键方面是快速启动的能力。在当前实践中,通过考虑热应力和低周疲劳来设定涡轮机启动限制。但是,追求更快的启动提出了一个问题,即其他热现象是否会成为启动过程的限制因素。差膨胀(DE)是这种热特性之一,特别是因为轴向间隙的设计不包含在启动计划设计中,并且由于在运行期间对其进行测量通常受到限制或根本没有可能性。这项工作的目的是了解相对于瞬态运行的DE行为,并量化这种运行对轴向游隙的设计和运行的影响。这是通过使用经过验证的热机械模型完成的,该模型用于比较机器不同运行条件下的DE行为。这些比较表明,更快的启动并不一定意味着需要更大的轴向间隙,这意味着所研究的涡轮机的热柔韧性不受DE的限制。然而,对于特定的位置,也已经获得了轴向摩擦确实可以成为与启动操作直接相关的限制因素。在这项工作中提出的最终方法是为了避免在设计和操作方面都涉及轴向间隙的过度保守的限制。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2018年第1期| 012603.1-012603.8| 共8页
  • 作者单位

    Department of Energy Technology, Royal Institute of Technology, Stockholm SE-100 44, Sweden;

    Siemens Industrial Turbomachinery AB, Finspang SE-612 83, Sweden;

    Siemens Industrial Turbomachinery AB, Finspang SE-612 83, Sweden;

    Department of Energy Technology, Royal Institute of Technology, Stockholm SE-100 44, Sweden;

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