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Flow distribution measurements from an air cooled condenser in a ~400MW power plant

机译:来自〜400MW发电厂的空气冷凝器的流量分布测量

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The use of air cooled condensers in power generation is increasing in many arid regions of the world. The classical A-frame condenser design is implemented in most new installations despite significant empirical evidence that such designs suffer from poor efficiencies and weather effects, and therefore provide significant scope for improvements. An inefficient condenser results in higher back pressure on the turbine, over-sized condensers and increased fan power. This paper addresses the flow distribution from an air cooled condenser for a ~400MW gas and steam power plant. The results indicate that the flow patterns from the large scale fans results in a severe inhomogeneous distribution of cooling on the condenser fins. These region of high and low velocity are closely related to the outlet flow pattern from the fans, where in the hub region the air mass flow rate is reduced, while in the tip region it is increased. These measurements provide an excellent basis for both understanding the existing deficiencies of the A-frame designs and moreover provide direction for improved designs in the future.
机译:在世界上许多干旱地区,在发电中使用空气冷却冷凝器正在增加。古典A帧冷凝器设计在大多数新安装中实现了大量的经验证据,即这种设计遭受效率差和天气效应,因此提供了显着的改进范围。效率低下的冷凝器导致涡轮机,过尺寸的冷凝器和增加的风扇功率上更高的背压。本文解决了用于〜400MW气体和蒸汽发电厂的空气冷凝器的流量分布。结果表明,来自大尺度风扇的流动模式导致冷凝器翅片上的冷却的严重不均匀分布。这些高速和低速的区域与来自风扇的出口流动图案密切相关,其中在轮毂区域中,空气质量流量减小,而在尖端区域中它增加。这些测量提供了理解A帧设计的现有缺陷的优异基础,而且还提供了未来改进设计的方向。

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