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Contribution to the Improvement for Thermal Working Condition of the Toyoha Mine Using Thermal Environmental Analysis

机译:使用热环境分析对Toyoha矿井热工作条件改进的贡献

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Geothermal gradient of Toyoha Mine, which produces Lead-Zinc ore minerals with some silver content, is 20-30 degrees centigrade per 100 meters, and highest rock temperature reaches more than 150 degrees centigrade in the working area. In this situation, countermeasure for hot conditions should be required seriously. In addition to the big diameter long hole drilling for the return air shaft and the cool water spray at the face, thermal environmental analysis has been applied. This paper summarizes the results of thermal characteristics of the mine and some examples of application to the field by thermal environmental analysis. Large scale ventilation network with 304 nodes, 484 roads and 6 fans has been constructed and thermal environmental analysis of the full mine basis has been conducted to match the original state of the mine, and short, middle and long term thermal environment estimation analysis has been conducted. But big differences of the calorific values, which are added in the underground, has been shown between simulations and measured data. In order to grade up the accuracy of the analysis, the estimation of individual thermal origin has studied, i.e. heat from blasted ore and rock, blasting, diesel and electric equipment, and so on. And thermal environmental analyses of the partial basis including heading block and extraction block have been done to set the thermal characteristics. Also suitable heat transmission compensation factor, surface area compensation factor, and others have been considered by case studies. Using the studied results noted above, authors applied this technology to actual field, such as ventilation plan at headings by sensitivity analysis, assessment of thermal condition improvement by some kinds of backfilling at post-extraction block, and support the underground layout design. Finally, it is proved that thermal environmental analysis technology is able to contribute the improvement of safety, productivity, and energy cost saving.
机译:丰田矿的地热梯度,生产铅锌矿矿物,含有一些银含量,为每100米20-30摄氏度,最高岩石温度达到150多摄氏度的工作区。在这种情况下,应严重要求对炎热条件的对策。除了用于返回空气轴的大直径长孔钻孔和面部的凉水喷雾外,还施加了热环境分析。本文总结了矿井热特性的结果和热环境分析对该领域的一些示例。具有304个节点的大型通风网络,484道路和6名风扇已经建成,并进行了全矿的热环境分析,以匹配矿井的原始状态,短,中长期热环境估算分析已经存在实施。但在地下添加的热值的差异已经显示在模拟和测量数据之间。为了分析分析的准确性,研究了个别热源的估计,研究了来自爆破的矿石和岩石,爆破,柴油和电气设备的热量,等等。已经完成了包括标题块和提取块的部分基础的热环境分析以设定热特性。还通过案例研究考虑了合适的传热补偿因子,表面积补偿因子等。使用上述研究结果,作者将这种技术应用于实际领域,例如通过灵敏度分析在标题中的通风计划,通过在提取后块的某种回填进行热条件改善,支持地下布局设计。最后,证明了热环境分析技术能够提高安全性,生产力和节能。

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