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Thermal Stress and Cyclic Stress Analysis of a Vertical Water-Cooled Wall at a Utility Boiler under Flexible Operation

机译:柔性锅炉垂直水冷壁的热应力和循环应力分析

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摘要

Supercritical once-through utility boilers are increasingly common in flexible operations in China. In this study, the tube temperature changes at a vertical water-cooled wall are analyzed during a fluctuating flexible operation. There are considerable differences in the temperatures of the parallel tubes at the minimum load, and the resulting thermal stress distributions at a front water-cooled wall are established using structural calculation software ANSYS 17.1, USA. A wide thermal stress distribution occurs among the parallel tubes, and the local cyclic stress amplitudes under flexible operation are higher than those under cold, warm, hot, or load-following operations. Because of the water wall expansion structure at the furnace, the higher tube temperature areas suffer from compressive stress, while the lower tube temperature areas suffer from tensile stress. During flexible operation, combustion uniformity and a two-phase flow distribution can improve the safety of vertical water-cooled wall operation. The minimum load of the utility boiler should be set as a limitation, and the tube temperature is an important parameter affecting the thermal and cyclic stresses.
机译:超临界一致电锅炉在中国的灵活操作中越来越普遍。在该研究中,在波动的柔性操作期间分析垂直水冷壁的管温变化。在最小载荷处的平行管的温度下存在相当大的差异,并且使用美国结构计算软件ANSYS 17.1,USA建立前水冷壁处的所得热应力分布。在平行管中发生宽的热应力分布,并且柔性操作下的局部循环应力幅度高于冷,温暖,热或负载跟踪操作的循环应力幅度。由于炉子的水壁膨胀结构,较高管温度区域遭受压缩应力,而下管温度区域遭受拉伸应力。在柔性操作期间,燃烧均匀性和两相流分布可以提高垂直水冷壁操作的安全性。实用锅炉的最小负荷应设定为限制,管温度是影响热和循环应力的重要参数。

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