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Water Deaeration in Water-Cooling Systems of the Stator Winding in a Turbogenerator with Hydrogen-Water Cooling

机译:氢水冷却式汽轮发电机定子绕组水冷系统中的除水

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Results of experimental investigations performed on 210–1200 MWel. power units at thermal and nuclear power stations yielded a statistical correlation of the corrosion rate for cooled copper conductors in water-cooling systems of the stator winding in a hydrogen-water cooled generator vs. cooling water quality characteristics, such as electrical conductivity, pH, and dissolved oxygen content. The content of dissolved oxygen in the cooling water is found to have a pronounced effect on the efficiency of corrosion protection of system elements. An engineering solution is proposed. It calls for installation of a small cavitation deaerator operating on superheated water in the cooling water return pipeline from the turbogenerator stator winding to a vacuum tank from which steam is removed by the main ejector of the turbine unit condenser or the deaerator’s own ejector. Special experimental investigations allowed the determination of the water deaeration efficiency in deaerators of the considered type. It is described by a dependence of a relative decrease in the content by weight of oxygen dissolved in the deaerated water on the water overheating at the deaerator inlet with reference to saturation temperature corresponding to the pressure in the steam suction pipeline. It was established by calculations that the proposed engineering solution decreased the corrosion rate of copper conductors in water-cooling systems of the stator winding, on average, by a factor of 2.1. Results of this investigation can be used in designing new power facilities or retrofitting process systems of operating hydrogen-water cooled turbogenerators.
机译:在210–1200 MWel上进行的实验研究结果。热电厂和核电厂的动力装置对氢水冷发电机定子绕组的水冷系统中的冷却铜导体的腐蚀速率与冷却水质量特性(如电导率,pH,和溶解氧含量。发现冷却水中的溶解氧含量对系统元件的腐蚀防护效率具有显着影响。提出了一种工程解决方案。它要求安装一个小型的空化脱气器,该空化器在从涡轮发电机定子绕组到真空箱的冷却水回流管道中的过热水上运行,该蒸汽通过涡轮机冷凝器的主喷射器或除气器自己的喷射器除去蒸汽。经过特殊的实验研究,可以确定所考虑类型的除氧器中水的除气效率。它是通过脱气水中溶解的氧的重量含量相对减少的关系来描述的,该变化取决于脱气器入口处水的过热,并参考与蒸汽吸入管道中压力相对应的饱和温度。通过计算确定,所提出的工程解决方案平均降低了定子绕组水冷系统中铜导体的腐蚀速率2.1倍。研究的结果可用于设计新的电力设施或运行氢水冷式涡轮发电机的改造过程系统。

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