Over-attemperation and Short-term Overheating in Pendant-type Superheaters

N. Basson, W. F. Fuls
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Abstract

ABSTRACT A water-wedge is often suspected to be the root cause for short-term overheating in fossil-fuelled boiler superheaters. However, it can be argued that evaporation of the water-wedge would cool the tube sufficiently and prevent overheating. This study aims to determine if the thermo-physical conditions occurring at low loads support this claim by studying the transient behaviour of a representative superheater segment under postulated conditions. A flow model was constructed to facilitate direct comparison with a boiler pendant superheater of a full-scale fossil-fuelled power plant. Several scenarios of water-wedges sustained by attemperation spraywater were simulated at low load operating conditions. The temperature evolution of the tube wall was tracked and, together with calculated equivalent stresses including thermal stress, was compared to the yield strength of the material. The results show that the stresses exerted over the tube wall and throughout the tube length are not sufficient to overcome the yield strength of the tube material, even for an aged tube under severe process conditions of boiler overfiring. Evaporation of the water-wedge provides sufficient cooling to the superheater tube to prevent failure. It was concluded that water-wedging alone is unlikely to be the root cause of short-term overheating at low boiler loads. Additional keywords: Short-term overheating; water-wedge; boiler superheater tube; attemperation; thermal stress, evaporation.
悬挂式过热器的过温和短期过热
水楔通常被怀疑是化石燃料锅炉过热器短期过热的根本原因。然而,可以争辩说,水楔的蒸发将充分冷却管,防止过热。本研究旨在通过研究具有代表性的过热器段在假设条件下的瞬态行为,确定低负荷下发生的热物理条件是否支持这一说法。建立了一个流动模型,以便与一个大型化石燃料发电厂的锅炉悬垂式过热器进行直接比较。在低负荷工况下,模拟了温喷水持续水楔的几种情况。跟踪了管壁的温度演变,并与计算的等效应力(包括热应力)一起与材料的屈服强度进行了比较。结果表明,即使是在锅炉过烧等恶劣工艺条件下的老化管,施加在管壁和整个管长上的应力也不足以克服管材的屈服强度。水楔的蒸发为过热器管提供了足够的冷却,以防止发生故障。得出的结论是,水楔本身不太可能是锅炉在低负荷下短期过热的根本原因。附加关键词:短期过热;water-wedge;锅炉过热管;温度调节;热应力,蒸发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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