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Dust control by air-blocking shelves and dust collector-to-bailing airflow ratios for a surface mine drill shroud

机译:露天矿钻探护罩的空气阻挡架和集尘器与导流的气流比控制粉尘

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摘要

The National Institute for Occupational Safety and Health (NIOSH) recently developed a series of validated models utilizing computational fluid dynamics (CFD) to study the effects of air-blocking shelves on airflows and respirable dust distribution associated with medium-sized surface blasthole drill shrouds as part of a dry dust collector system. Using validated CFD models, three different air-blocking shelves were included in the present study: a 15.2-cm (6-in.)-wide shelf; a 7.6-cm (3-in.)-wide shelf; and a 7.6-cm (3-in.)-wide shelf at four different shelf heights. In addition, the dust-collector-to-bailing airflow ratios of 1.75:1, 1.5:1, 1.25:1 and 1:1 were evaluated for the 15.2-cm (6-in.)-wide air-blocking shelf. This paper describes the methodology used to develop the CFD models. The effects of air-blocking shelves and dust collector-to-bailing airflow ratios were identified by the study, and problem regions were revealed under certain conditions.
机译:美国国家职业安全与健康研究所(NIOSH)最近开发了一系列经过验证的模型,利用计算流体动力学(CFD)研究了阻气层架对气流的影响以及与中型表面爆破钻探护罩相关的可吸入粉尘分布,例如干式除尘器系统的一部分。使用经过验证的CFD模型,本研究中包括三个不同的空气阻挡架子:15.2厘米(6英寸)宽的架子; 7.6厘米(3英寸)宽的搁板;并在四个不同的架子高度上放置一个7.6厘米(3英寸)宽的架子。此外,对于宽于15.2厘米(6英寸)的空气阻挡架子,评估了集尘器与清洁空气的流量比为1.75:1、1.5:1、1.25:1和1:1。本文介绍了用于开发CFD模型的方法。通过研究确定了阻气层架和集尘器与导流空气比的影响,并在一定条件下揭示了问题区域。

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