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Applied Research of U-Shape Ventilation Network in Underground Mine

机译:U形通风网在地下矿井中的应用研究

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For the purpose of fully and systematically observe, research and optimize the U-sharp ventilation system in Vilafruns mine, a simulation model based on the principles of geometric, kinematic and dynamic similarity is established in the s imulation laboratory. By simulating a U-shape ventilation network, t he air volume distribution and wind velocity in different sections of the model were measured and compared with practical data obtained in V ilafruns mine. Results show that the lowest wind velocity in the model is higher than 0.42 m/s, thus it is in a turbulent f low state, which satisfies the kinematical and dynamic similarity principles. T he characteristic of air volume distribution and wind velocity in Vilafruns mine are basically simulated by the experimental model through the obtained data and figures, which reflects the establishment of the model is correct and successful, and the experimental data is accurate and reliable. Moreover, this model provides useful references for the selection of mine ventilation types and for the optimization of the existing ventilation network.
机译:为了全面,系统地观察,研究和优化Vilafruns矿山的U形通风系统,在模拟实验室中建立了基于几何,运动学和动态相似性原理的仿真模型。通过模拟一个U形通风网络,测量了模型不同部分的风量分布和风速,并将其与从Vilafruns矿获得的实际数据进行了比较。结果表明,模型中的最低风速高于0.42 m / s,处于湍流状态,满足运动学和动力学相似性原理。通过所获得的数据和数据,通过实验模型基本模拟了Vilafruns矿山的风量分布和风速特征,反映出该模型的建立是正确和成功的,实验数据准确可靠。此外,该模型为矿井通风类型的选择和现有通风网络的优化提供了有用的参考。

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