首页> 外文期刊>Thermal science >SIMULTANEOUS EFFECTS OF WATER SPRAY AND CROSSWIND ON PERFORMANCE OF NATURAL DRAFT DRY COOLING TOWER
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SIMULTANEOUS EFFECTS OF WATER SPRAY AND CROSSWIND ON PERFORMANCE OF NATURAL DRAFT DRY COOLING TOWER

机译:喷水和C风对天然干式冷却塔性能的同时影响

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摘要

To investigate the effect of water spray and crosswind on the effectiveness of the natural draft dry cooling tower (NDDCT), a three-dimensional model has been developed. Efficiency of NDDCT is improved by water spray system at the cooling tower entrance for high ambient temperature condition with and without crosswind. The natural and forced heat convection flow inside and around the NDDCT is simulated numerically by solving the full Navier-Stokes equations in both air and water droplet phases. Comparison of the numerical results with one-dimensional analytical model and the experimental data illustrates a well-predicted heat transfer rate in the cooling tower. Applying water spray system on the cooling tower radiators enhances the cooling tower efficiency at both no wind and windy conditions. For all values of water spraying rate, NDDCTs operate most effectively at the crosswind velocity of 3m/s and as the wind speed continues to rise to more than 3 m/s up to 12 m/s, the tower efficiency will decrease by approximately 18%, based on no-wind condition. The heat transfer rate of radiator at wind velocity 10 m/s is 11.5% lower than that of the no wind condition. This value is 7.5% for water spray rate of 50kg/s.
机译:为了研究喷水和侧风对自然通风干式冷却塔(NDDCT)有效性的影响,已开发了三维模型。通过在冷却塔入口处使用喷水系统提高NDDCT的效率,适用于有或没有侧风的高环境温度条件。通过求解空气相和水滴相中的完整Navier-Stokes方程,可以数值模拟NDDCT内部和周围的自然对流和强迫对流。将数值结果与一维分析模型和实验数据进行比较,可以很好地预测冷却塔中的传热速率。在无风和大风条件下,在冷却塔散热器上应用喷水系统可提高冷却塔效率。对于所有喷水率值,NDDCT在侧风速度为3m / s时最有效地运行,并且随着风速持续上升到超过3 m / s到12 m / s,塔的效率将降低约18 %,基于无风情况。风速为10 m / s时散热器的传热率比无风情况低11.5%。对于50kg / s的喷水速率,该值为7.5%。

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