Determination of Airways Resistance, Volumetric Efficiency and Development of Ventilation Model of Rosh Pinah Zinc Mine Namibia

Jeremia Kalenga, J. M. Akande
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Abstract

A quantitative technique was conducted at Rosh Pinah Zinc mine, Namibia with its main purpose to determine airways resistance which is a function of the parameters; roughness of the airways and the friction factor. The 32 branch points (i.e. a-ag) that stand for ventilation circuit have been selected. Data collected includes, length and width of airways, air velocity; air density, and roughness of the airways which were used to determine coefficient of frictions, friction factors and airway resistances. A ventilation model was developed. In order to improve the current ventilation model, airways resistance of the mine was determined and simulated in a modified model using VentSimTM software. An average total airways resistance of 0.32027 Ns2/m8 has been achieved for Rosh Pinah mine. It should be pointed out that, as the mine advances its production faces deeper, this value would increases suddenly. Simulation revealed that as much as 34.4 m3/s of air can be received at the production faces, compared to the measured received amount of 19.3 m3/s. Therefore, volumetric efficiency of the mine was improved from 29.3% to 68.3%. It was also noticed that after importing the resistance values into the model together with other parameters, the model was greatly improved and no cause for concern.
纳米比亚Rosh Pinah锌矿气道阻力、通气量的测定及通风模型的建立
在纳米比亚Rosh Pinah锌矿进行了定量技术,其主要目的是确定气道阻力,这是参数的函数;气道的粗糙度和摩擦系数。选取32个分支点(即a-ag)代表通风回路。收集的数据包括:气道的长度和宽度、气流速度;空气密度和气道的粗糙度用于确定摩擦系数,摩擦系数和气道阻力。开发了通风模型。为了改进现有的通风模型,利用VentSimTM软件对改进后的模型进行了气道阻力的测定和模拟。Rosh Pinah矿平均总气道阻力为0.32027 Ns2/m8。应该指出的是,随着矿山的推进,其生产面越深,这个值会突然增加。模拟结果表明,与测量的19.3 m3/s的空气接收量相比,生产面可接收多达34.4 m3/s的空气。因此,该矿的体积效率由29.3%提高到68.3%。我们还注意到,将电阻值与其他参数一起导入模型后,模型得到了很大的改进,无需担心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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