首页> 外文会议>SME annual meeting and exhibit 2008 : New Horizons-New Challenges >RESERVOIR MODELING-BASED PREDICTION AND OPTIMIZATION OF VENTILATION REQUIREMENTS DURING DEVELOPMENT MINING IN UNDERGROUND COAL MINES
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RESERVOIR MODELING-BASED PREDICTION AND OPTIMIZATION OF VENTILATION REQUIREMENTS DURING DEVELOPMENT MINING IN UNDERGROUND COAL MINES

机译:地下煤矿开采过程中基于储层建模的通风需求预测和优化

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During development mining, ventilation capacity may decrease and the ventilation requirements may depart from initially planned values depending on the mining rate, increases in the methane emission rate, and changes in ventilation airway leakages. Insufficient ventilation air quantities and the occurrences of high methane liberation rates can overwhelm the existing quantity of ventilation air and result in elevated levels of methane gas during development mining. This condition can both limit the development of that section and increase the risk for an ignition that may lead to an explosion. Thus, the prediction of ventilation air requirements prior to mining can enhance worker safety by reducing the likelihood that explosive methane-air mixtures form.rnThis study presents an approach for prediction of methane inflow rates using coalbed methane reservoir modeling. For this purpose, a two-phase coalbed reservoir model of a three-entry type roadway is developed. In the model, grids are dynamically controlled to simulate development of entries. Examples are given for methane inflow and ventilation air requirements as a function of mining rate, development section length, mining height, and the existence of degasification boreholes. This technology can be used to limit the methane concentrations occurring as a result of the influences of various coalbed and operational parameters.
机译:在开采过程中,通风量可能会降低,通风要求可能会偏离初始计划值,具体取决于采矿率,甲烷排放率的增加以及通风道泄漏的变化。通风量不足和甲烷释放率高可能会使现有的通风量不堪重负,并导致在开发采矿过程中甲烷气水平升高。这种情况既会限制该区域的发展,又会增加着火的危险,从而可能导致爆炸。因此,在开采前对通风空气需求的预测可以通过减少爆炸性甲烷-空气混合物形成的可能性来提高工人的安全性。本研究提出了一种利用煤层气储层模型预测甲烷流入量的方法。为此,建立了三进式巷道的两相煤层气藏模型。在模型中,可以动态控制网格以模拟条目的发展。给出了甲烷流入量和通风量要求的示例,这些要求与采矿速率,开发段长度,采矿高度以及脱气孔的存在有关。该技术可用于限制由于各种煤层和操作参数的影响而产生的甲烷浓度。

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