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MECHANICAL DESIGN OF LARGE STEAM TURBINE COMPONENTS FOR PART LOAD CONDITIONS

机译:部分负荷工况下大型汽轮机组件的机械设计

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Recent developments like the significant introduction of renewable energy sources to the electricity networks worldwide have led to more frequent and extended operation of fossil power plants in part load conditions. As a result the typical load spectrum of large steam turbines used for electricity generation has changed over the last years and will continue to do so. A number of papers has already been (pub) how to optimize the water-steam cycle and the steam turbine from a thermodynamical and aero-dynamical point of view for this new load regime in order to improve the average efficiency. But the changed load regime also poses a challenge for the mechanical design and structural integrity assessment of steam turbines. Reason for this is that the rated conditions are not necessarily the most challenging boundary conditions and therefore not necessarily a suitable, conservative envelope for all other load cases for mechanical design. Pressures decrease, but steam temperatures in part loads can increase and heat transfer coefficients and the influence of radiation on the component temperatures change. With an increasing demand for and a wider range of part load operation it for this reason becomes more important than ever to consider these load cases in the mechanical design. This paper uses a large, double-flow intermediate pressure steam turbine as an example to investigate the impact of extended part load operation on the design. Both an analytical model and finite element calculations are used to compare from a structural integrity point of view a low part-load load case and the rated load case and to evaluate the significance of heat radiation.
机译:最近的发展,例如在全球范围内的电网中大量引入可再生能源,已导致化石电厂在部分负荷条件下的运行更加频繁和扩展。结果,用于发电的大型蒸汽轮机的典型负载范围在过去几年中已经改变,并将继续保持这种趋势。为了提高平均效率,从热力学和空气动力学的观点出发,已经有许多论文发表(公开)如何从热力学和空气动力学的角度优化水蒸汽循环和蒸汽轮机。但是,改变的负载状态也对汽轮机的机械设计和结构完整性评估提出了挑战。原因是额定条件不一定是最具挑战性的边界条件,因此对于机械设计的所有其他载荷工况,也不一定是合适的保守范围。压力降低,但是部分负载中的蒸汽温度会升高,并且传热系数以及辐射对组件温度的影响也会发生变化。随着对部分负载操作的需求增加和范围越来越大,因此,在机械设计中考虑这些负载情况比以往任何时候都变得更加重要。本文以大型双流中压蒸汽轮机为例,研究了部分负荷扩展运行对设计的影响。分析模型和有限元计算都用于从结构完整性的角度比较低部分载荷工况和额定载荷工况,并评估热辐射的重要性。

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