首页> 外文会议>ASME turbo expo >EXPERIMENTAL INVESTIGATION INTO THERMAL BEHAVIOR OF STEAM TURBINE COMPONENTS. PART 2 - NATURAL COOLING OF STEAM TURBINES AND THE IMPACT ON LCF LIFE
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EXPERIMENTAL INVESTIGATION INTO THERMAL BEHAVIOR OF STEAM TURBINE COMPONENTS. PART 2 - NATURAL COOLING OF STEAM TURBINES AND THE IMPACT ON LCF LIFE

机译:汽轮机组件热性能的实验研究。第2部分-汽轮机的自然冷却及其对LCF寿命的影响

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Steam turbine cool-down has a significant impact on the cyclic fatigue life. A lower initial metal temperature after standstill results in a higher temperature difference to be overcome during the next start-up. Generally, lower initial metal temperatures result in higher start-up stress. In order to optimize steam turbines for cyclic operation, it is essential to fully understand natural cooling, which is especially challenging for rotors. A two-dimensional numerical procedure is described for the assessment of the thermal regime during natural cooling including the rotors, casings, valves and main pipes. The concept of the cooling calculation is to replace the steam gross buoyancy during the gland steam ingestion phase by an equivalent fluid conductivity, that gives the same thermal effect on the metal parts. The fluid equivalent conductivity is calculated based on measurements. The approach is calibrated with experimental data. Finally, the highly sensitive nature of the cyclic lifetime to the predicted cooling evolution is demonstrated. This paper is complementary with the paper [1J.
机译:汽轮机冷却对循环疲劳寿命有重要影响。静止后较低的初始金属温度会导致较高的温差,需要在下一次启动时克服。通常,较低的初始金属温度会导致较高的启动应力。为了优化蒸汽轮机的循环运行,必须充分了解自然冷却,这对于转子而言尤其具有挑战性。描述了一种二维数值程序,用于评估自然冷却过程中的热状态,包括转子,壳体,阀门和主管。冷却计算的概念是用等效的流体传导率代替在腺体蒸汽摄入阶段的蒸汽总浮力,从而对金属零件产生相同的热效应。流体当量电导率是基于测量值计算的。该方法已通过实验数据进行了校准。最后,证明了循环寿命对预测的冷却演变高度敏感。本文是对论文的补充[1J。

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