Simulation of air shock waves induced by large-scale roof caving in huge mined-out area
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摘要: 基于采空區冒落過程中冒落巖體與空氣相互作用中能量的守恒與轉化,建立了沖擊氣浪風速模型,設計制作了模擬實驗測試裝置。實驗表明,隨著下落高度增加,沖擊氣浪風速增加幅度略有減緩,采用大斷面空間小尺寸的"打氣筒"模型計算能夠更好地反映冒落過程中的氣體流動過程,但應該以"打氣筒"和"繞流"的復合模型表征沖擊起浪。在實驗基礎上建立的實驗模型與理論模型有很好的相似性。Abstract: Based on energy conservation and transformation caused by the interaction of caving rock and air in the course of roof caving in large-size mined-out area,a wind speed model of impact waves was constructed and an experimental device was designed.Experimental results show that with the increasing of rock falling height,the amplitude of wind speed of impact waves slowly increases.The small-size inflator model in a large cross-section space could better describe air flow during roof caving,but air shock waves should be expressed by the inflator and external flow compound model.The established experimental and theoretical models have a great similarity.
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Key words:
- underground mining /
- caving /
- hazard /
- prediction /
- air shock wave /
- wind speed
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