An Optimized Start-Up Mode of Tower Solar Turbines With Heat Transfer Coefficient Model Based on Experiment Data

L. Xiaoxiao, C. Gang, Wang Peng
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Abstract

Lifetime assessment of steam turbine components has become more and more important for the past years. Tower solar turbines experience a greater number of start-ups than those operating in base-load plants and high levels of thermal stress occurs during fast start-up, which both have a significant impact on lifetime. To achieve the fastest start-up time without reducing the lifetime of solar turbine it is essential to fully understand the thermal behavior of the turbine components during start-up. A series of experiments have been carried on a combined cycle steam turbine. The operation mode and inlet parameters of experiment unit are similar to tower solar turbine, so the new thermal model of heat transfer coefficient based on these experiment data can be used for the start-up research of tower solar turbine. A Finite Element (FE) turbine model is created and analyzed with the new thermal model in many start-up cases such as warm start, hot start to seek for an optimized start-up mode.
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基于实验数据的换热系数模型优化塔式太阳能发电机组启动方式
近年来,汽轮机部件的寿命评估变得越来越重要。塔式太阳能涡轮机的启动次数比在基本负荷电厂中运行的要多,并且在快速启动期间会出现高水平的热应力,这两者对寿命都有重大影响。为了在不缩短太阳能涡轮机使用寿命的前提下实现最快的启动时间,必须充分了解太阳能涡轮机部件在启动过程中的热行为。在联合循环汽轮机上进行了一系列试验。实验装置的运行方式和进口参数与塔式太阳能涡轮机相似,因此基于这些实验数据建立的新的传热系数热模型可用于塔式太阳能涡轮机的启动研究。建立了汽轮机有限元模型,并对热启动、热启动等多种启动情况进行了分析,以寻求最优的启动方式。
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