首页> 外文会议>ASME Fluids Engineering Division Meeting >DETAILS STUDY OF AMBIENT WIND EFFECT ON HEAT DISSIPATION CAPACITY OF THERMAL-POWERPLANT DRY COOLING-TOWERS
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DETAILS STUDY OF AMBIENT WIND EFFECT ON HEAT DISSIPATION CAPACITY OF THERMAL-POWERPLANT DRY COOLING-TOWERS

机译:环境风效对热动力通动力干燥冷却塔散热能力的详细研究

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Thermal powerplants report a reduction in their dry cooling tower performances due to surrounding wind drafts. Therefore, it is very important to consider the influence of wind velocity in cooling tower design; especially in geographical points with high wind conditions. In this regard, we use the computational fluid dynamics (CFD) tool and simulate a dry cooling tower in different wind velocities of 0, 5 and 10 m/s. To extend our calculations; we also consider the temperature variation of circulating water through the tower heat exchanger or deltas one-by-one. We show that some heat exchangers around the tower cannot reduce the circulating water temperature sufficiently. This causes an increase in the mean temperature of those heat exchangers. The worst performances can be attributed to heat exchanger located on side wind places. We will discuss the detail performance of each delta and their assembly in draft wind conditions. This study suggests some effective ways to overcome thermal-performance of cooling tower in wind conditions.
机译:热动力平胶由于周围的风径而报告其干燥的冷却塔表演的减少。因此,考虑风速在冷却塔设计中的影响非常重要;特别是在风条件高的地理点。在这方面,我们使用计算流体动力学(CFD)工具,并在不同风速下模拟0,5和10m / s的干燥冷却塔。扩展我们的计算;我们还考虑循环水通过塔式热交换器或Δ逐一度的温度变化。我们表明塔周围的一些热交换器不能充分降低循环水温。这导致这些热交换器的平均温度的增加。最糟糕的性能可以归因于位于侧风的热交换器。我们将讨论每个三角洲的细节表现及其组装在风情条件草案中。本研究表明了一些有效的方法来克服风力条件下冷却塔的热性能。

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