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首页> 外文期刊>International Journal of Heat and Mass Transfer >Addressing the adverse cold air inflow effects for a short natural draft dry cooling tower through swirl generation
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Addressing the adverse cold air inflow effects for a short natural draft dry cooling tower through swirl generation

机译:通过产生涡旋来解决短自然通风干式冷却塔的不利冷空气流入影响

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摘要

Short natural draft dry cooling towers (NDDCTs) are susceptible to cold air inflow. A transient simulation on Gatton tower is carried out to study the time-dependent cold air inflow characteristic. Our results show that, the cold air inflow penetrates inside the tower after a short period of pseudo-steady state, and a steady state with the cold air inflow is finally formed. We also investigate the possibility of inducing swirling motions to counter the cold inflow. The results demonstrate that, by reducing the local vortices caused by the specific tower structure, and thinning the boundary layer thickness, swirl is able to decrease the cold air inflow effect. Finally, feasibility of the suggested approach was verified by comparing the energy required to create the swirl with the extra heat transfer from the heat exchangers in the tower which would have not been materialized because of the cold inflow. It was observed that, an extra 40 kW heat transfer gain can be anticipated if only 1 W is spent to induce the swirl. (C) 2019 Elsevier Ltd. All rights reserved.
机译:短的自然通风干式冷却塔(NDDCT)易受冷空气流入的影响。对盖顿塔进行了瞬态模拟,以研究随时间变化的冷空气流入特性。我们的结果表明,冷空气流入经过短暂的假稳态后渗透到塔内,并最终形成具有冷空气流入的稳态。我们还研究了诱导涡旋运动以抵消冷流入的可能性。结果表明,通过减小由特定塔架结构引起的局部涡旋并减小边界层厚度,涡旋能够减小冷空气的流入效果。最后,通过将产生漩涡所需的能量与塔内热交换器产生的额外热量传递进行比较,从而验证了所建议方法的可行性,由于冷流的影响,这些热量无法实现。据观察,如果仅花费1 W引起涡流,则可以预期获得40 kW的额外热传递增益。 (C)2019 Elsevier Ltd.保留所有权利。

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