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Effectiveness and optimum jet velocity for a plane jet air curtain used to restrict cold room infiltration

机译:用于限制冷室渗透的平面喷射气幕的有效性和最佳喷射速度

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摘要

The effectiveness of a 1.0 m wide air curtain fitted over a 1.36 m wide entrance to a cold store has been evaluated. It was shown that careful setting up of the air curtain (adjusting the jet velocity and angle) was needed, this achieved an effectiveness of 0.77 compared to the initial value of only 0.31 as set by the installer. An analytical model to predict the optimum jet velocity was compared to measured data. It is important to choose the correct safety factor (an increase in the jet velocity) for this model, as an effectiveness of between 0.37 and 0.70 could be produced using the range of safety factors found in the literature. A 2D computational fluid dynamics (CFD) model predicted a maximum effectiveness of 0.84 and showed how the effectiveness of the curtain was related to the shape of the jet and how this varied with jet velocity and door open duration.
机译:评估了在冷藏库的1.36 m宽的入口处安装1.0 m宽的气幕的有效性。结果表明,需要仔细设置气帘(调节射流速度和角度),与安装者设定的初始值0.31相比,这实现了0.77的效率。将预测最佳射流速度的分析模型与测量数据进行了比较。为该模型选择正确的安全系数很重要(射流速度增加),因为使用文献中发现的安全系数范围可以产生0.37到0.70的有效性。二维计算流体动力学(CFD)模型预测最大效率为0.84,并显示幕帘的有效性与射流的形状如何相关,以及其如何随着射流速度和开门时间而变化。

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