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Computational fluid dynamic modeling of a medium-sized surface mine blasthole drill shroud

机译:中型矿山吹嘘钻罩的计算流体动力学建模

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The Pittsburgh Mining Research Division of the U.S. National Institute for Occupational Safety and Health (NIOSH) recently developed a series of models using computational fluid dynamics (CFD) to study airflows and respirable dust distribution associated with a medium-sized surface blasthole drill shroud with a dry dust collector system. Previously run experiments conducted in NIOSH's full-scale drill shroud laboratory were used to validate the models. The setup values in the CFD models were calculated from experimental data obtained from the drill shroud laboratory and measurements of test material particle size. Subsequent simulation results were compared with the experimental data for several test scenarios, including 0.14 m~3/s (300 cfm) and 0.24 m~3/s (500 cfm) bailing airflow with 2:1, 3:1 and 4:1 dust collector-to-bailing airflow ratios. For the 2:1 and 3:1 ratios, the calculated dust concentrations from the CFD models were within the 95 percent confidence intervals of the experimental data. This paper describes the methodology used to develop the CFD models, to calculate the model input and to validate the models based on the experimental data. Problem regions were identified and revealed by the study. The simulation results could be used for future development of dust control methods for a surface mine blasthole drill shroud.
机译:美国国家职业安全和健康研究所的匹兹堡矿业研究部门(Niosh)最近开发了一系列使用计算流体动力学(CFD)的模型,以研究与中型展示展示钻牛罩相关的气流和可吸入的粉尘分布。干尘收集器系统。以前在Niosh的全级钻罩实验室进行的运行实验用于验证模型。 CFD模型中的设置值由从钻子护罩实验室获得的实验数据和测试材料粒度的测量值计算。将随后的仿真结果与几种测试场景的实验数据进行了比较,包括0.14 m〜3 / s(300cfm)和0.24 m〜3 / s(500 cfm)释放气流,其中2:1,3:1和4:1除尘器到扣除气流比率。对于2:1和3:1比率,来自CFD模型的计算粉尘浓度在实验数据的95%置信区间内。本文介绍了用于开发CFD模型的方法,计算模型输入并根据实验数据验证模型。研究由研究确定并通过该研究揭示。仿真结果可用于对地面矿山普拉索钻罩的防尘控制方法的未来发展。

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