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Numerical simulation of the dust suppression with forced ventilation shunt mode in fully mechanized workface

机译:用综合机械化工作面用强制通风分流模式的灰尘抑制的数值模拟

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Based on fluid mechanics, the theory of gas-solid flow and jet theory etc. Dust migration regularity in fully mechanized workface was studied and simulated under far-pressing-near-suction ventilation with FLUENT Simulation technology. When the ratio of blowing to suction(μ) is larger than 1, the range of high dust concentration reduces and the maximum dust concentration decreases. The sketch of flow field of the different μ, the short of traditional far-pressing-near-suction ventilation and the superiority in practical of dust removal mode with the forced ventilation shunt were summarized and analyzed. The dust migration regularity in different shunt parameters (K) in this mode was simulated. Increasing shunted air quantities (Q) is beneficial to the control of dust diffusion in the roadway. But dust concentration near pressure air side will increase if the value of the shunted air quantities is over a critical value.
机译:基于流体力学,研究了储能工作面的粉尘迁移规律性,并模拟了流畅的仿真技术的近近抽吸通风。当吹向抽吸(μ)的比率大于1时,高粉尘浓度的范围降低,最大粉尘浓度降低。总结并分析了具有强制通风分流器的传统近近吸气通风和实际除尘模式的传统近近吸气通风和优越性的流场的草图。模拟了这种模式下不同分流参数(k)中的粉尘迁移规律性。增加分流空气量(Q)有利于控制巷道中的灰尘扩散。但如果分流空气量的值超过临界值,则压力空气侧的灰尘浓度将增加。

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