首页> 外文会议>ASME Power Conference >INVESTIGATING THE EFFECTS OF FLUE GAS INJECTION AND HOT WATER DISTRIBUTION AND THEIR INTERACTION ON NATURAL DRAFT WET COOLING TOWER PERFORMANCE
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INVESTIGATING THE EFFECTS OF FLUE GAS INJECTION AND HOT WATER DISTRIBUTION AND THEIR INTERACTION ON NATURAL DRAFT WET COOLING TOWER PERFORMANCE

机译:研究烟气喷射和热水分布的影响及其相互作用对自然湿法冷却塔性能的影响

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This paper utilizes numerical modeling to address the effects of two parameters on natural draft cooling tower performance, namely the radial hot water distribution and flue gas injection. Predictions show that cold water temperature leaving the tower can be slightly decreased by increasing the weighting of the radial hot water distribution towards the tower periphery. The injection of scrubbed flue gas into the tower chimney can have either a positive or a negative effect on tower cooling performance, depending on the temperature of the flue gas relative to the temperature of moist air in the chimney. The temperature of the scrubbed flue gas is the primary variable affecting cooling tower performance, associated with flue gas injection. This paper investigates using the radial distribution of hot water to optimize the tower cooling performance when injecting scrubbed flue gas into the chimney, both for conditions when the flue gas is warmer and cooler than the temperature of moist air in the chimney. Predictions with no flue gas injection show that optimizing hot water distribution produced 0.4 °C reduction in cooled water temperature. With relatively cold (32.2 °C) and relatively hot (65.6 °C) flue gas injection, optimizing hot water distribution produced slightly more than 0.2 °C reduction in cooled water temperature.
机译:本文利用数值模型来解决两个参数对自然通风冷却塔性能的影响,即径向热水分布和烟道气注入。预测表明,通过增加朝向塔架外围的径向热水分配的权重,可以稍微降低离开塔架的冷水温度。将洗涤后的烟道气注入塔式烟囱可对塔冷却性能产生正面或负面影响,这取决于烟道气温度相对于烟囱中湿空气的温度。洗涤后的烟气温度是影响与烟气注入相关的冷却塔性能的主要变量。本文研究了当烟道气体比烟囱中的湿空气温度更高和更低时,将洗涤后的烟道气注入烟囱时利用热水的径向分布来优化塔的冷却性能。没有烟道气注入的预测表明,优化热水分配可使冷却水温度降低0.4°C。通过注入相对较低的温度(32.2°C)和相对较高的温度(65.6°C),优化热水分配可以使冷却水温度略微降低0.2°C以上。

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