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Effect mechanism of exit-water temperature distribution characteristics on the anti-freezing of natural draft dry cooling tower

机译:出口水温分布特性对天然干燥冷却塔抗冻干的影响机理

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For thermal power plants with natural draft dry cooling towers (NDDCTs) in arid and severely cold regions, the anti-freezing of finned-tube bundles is critical for the safe and economic running of a thermodynamic system. Using volume source term models representing the water flow in each pass of a cooling column, a 3D numerical model for NDDCT was established and validated. The exit water temperature and its relevant distribution characteristics could then be analyzed from cooling columns, deltas to the whole tower. Based on the analyses, the non-equilibrium temperature difference and relevant anti-freezing parameters were defined. It could be observed that the ambient crosswind, ambient temperature, heat load, circulating water flow rate, and convection pattern have different impact mechanisms on the exit water temperature distribution characteristics, among which, the ambient crosswind plays a major role but the ambient temperature has a negligible effect. Finally, the critical anti-freezing average exit-water temperatures were presented based on real work conditions, which would facilitate the safe and economic operation of NDDCTs in severely cold weather.
机译:对于热发电厂的热发电厂在干旱和严重寒冷地区的具有天然干燥冷却塔(NDDCTS),翅片管捆绑的防冻对于热力学系统的安全和经济运行至关重要。使用表示冷却塔的每次通过的水流的音量源术语模型,建立并验证了NDDCT的3D数值模型。然后可以从冷却柱,达塔斯到整个塔的旱地分析出口水温及其相关分布特性。基于分析,定义了非平衡温度差和相关的抗冷冻参数。可以观察到,环境横向,环境温度,热负荷,循环水流率和对流模式对出口水温分布特性具有不同的冲击机制,其中,环境跨风发挥着重要作用,但环境温度有可忽略不计的效果。最后,基于实际工作条件提出了临界抗冻结平均出口水温,这将促进NDDCT的安全和经济运作严重寒冷的天气。

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