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MODELING PARTICLE DEPOSITION IN VENTILATION DUCTS

机译:模拟通风管道中的颗粒沉积

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摘要

This paper describes predictions from two models of fractional particle loss in four typical HVAC duct runs. One model is a state-of-the-art Eulerian formulation; the second is based on empirical fits to experimental particle deposition data collected in a laboratory. The experiments are briefly described and sample results are presented. The Eulerian model only predicts deposition from fully developed turbulence, while the empirical model can be applied to duct bends and developing turbulence as well. The models predict almost no losses for particles smaller than 1μm and nearly complete loss of particles larger than 40μm in all duct runs. The empirical model suggests that particle loss in ventilation ducts is dominated by gravitational settling to the floor of horizontal ducts, and by deposition to zones where turbulent flow is undeveloped, such as in bends and in duct sections immediately after bends.
机译:本文介绍了四种典型的HVAC管道运行中两种由颗粒损失分数模型构成的预测。一种模型是最新的欧拉公式;第二种是基于对实验室收集的实验性颗粒沉积数据的经验拟合。简要描述了实验并给出了样本结果。欧拉模型仅根据充分发展的湍流来预测沉积,而经验模型也可以应用于管道弯曲和发展湍流。这些模型预测,在所有风道中,小于1μm的颗粒几乎没有损失,大于40μm的颗粒几乎完全损失。该经验模型表明,通风管道中的颗粒损失主要由重力沉降到水平管道的底部,以及沉积到湍流不发育的区域(例如在弯曲处以及弯曲后立即在管道部分中)引起。

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