首页> 外文会议>2002 International Joint Power Generation Conference, Jun 24-26, 2002, Scottsdale, Arizona >IMPROVING NATURAL DRAFT COOLING TOWER PERFORMANCE WITH HEAT INJECTION
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IMPROVING NATURAL DRAFT COOLING TOWER PERFORMANCE WITH HEAT INJECTION

机译:喷射提高自然通风冷却塔的性能

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This paper presents an assessment of heat injection as a means of improving natural draft cooling tower performance. The concept involves injecting heat into the cooling tower exit air/vapor stream immediately above the drift eliminators in order to increase the difference between the density of the exit air/vapor stream and the ambient air. The density difference between the air/vapor in the cooling tower stack and the ambient air is the engine that drives airflow through the cooling tower. The enhancement of the airflow through the cooling tower (the natural draft) results in more evaporation and thus lowers the circulating water temperature. Because the heat is injected above the drift eliminators, it does not heat the circulating water. To evaluate the cooling tower performance improvement as a function of heat injection rate, a thermal/aerodynamic computer model of Entergy's White Bluff 1 & 2 and Independence 1 & 2 (approximately 840 MW each) natural draft cooling towers was developed. The computer model demonstrated that very substantial reductions in cold water temperature (up to 7℉) are obtainable by the injection of heat. This paper also discusses a number of possible heat sources. Sources of heat covered include extraction steam, auxiliary steam, boiler blow-down, and waste heat from a combustion turbine. The latter source of heat would create a combined cycle unit with the combination taking place in the condensing part of the cycle (bottom of the cycle) instead of the steam portion of the cycle (top of the cycle).
机译:本文提出了一种热注入评估方法,以提高自然通风冷却塔的性能。该概念涉及将热量注入到除水器正上方的冷却塔出口空气/蒸气流中,以增加出口空气/蒸气流与环境空气之间的差异。冷却塔烟囱中的空气/蒸气与周围空气之间的密度差是驱动气流通过冷却塔的发动机。通过冷却塔的气流(自然通风)的增强导致更多的蒸发,从而降低了循环水的温度。因为热量注入到除水器上方,所以它不会加热循环水。为了评估冷却塔性能随热量注入速率的提高,开发了Entergy的White Bluff 1和2和Independence 1和2(每个约840 MW)自然通风冷却塔的热/空气动力学计算机模型。该计算机模型表明,通过注入热量可以大大降低冷水温度(最高7℉)。本文还讨论了许多可能的热源。所覆盖的热源包括抽汽,辅助蒸汽,锅炉排污和来自燃气轮机的废热。后者的热源将创建一个组合循环单元,其组合发生在循环的冷凝部分(循环的底部),而不是循环的蒸汽部分(循环的顶部)。

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