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Influence of geometry shape on gas explosion propagation laws in bend roadways

机译:几何形状对弯道瓦斯爆炸传播规律的影响

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Based on the experiment, the important influence of the pipe with abnormal structure on gas explosion propagation characteristics is analyzed. The results show that gas explosion propagation at the turning point is a process of interaction of pressure wave, flame and complicated flow field. The overpressure of pressure wave and flame transmission velocity are rapidly accelerated and the pipe wall at the turning point is seriously destroyed. The angle of bend has a great influence on the gas explosion propagation characteristics, i.e. there is a different degree of change in both flame velocity and pressure wave overpressure value when gas explosion propagates through bend with different angles. The bend not only increases the turbulent flow of combustion area that accelerates the reaction and velocity, but also enlarges the resistance and heat transmission to the pipe wall. At the same time, the expansion wave at the turning point restrains the gas explosion propagation. The influence of bend on gas explosion propagation characteristics is determined by the combined impact of inhibitor factors and motivation factor. Experiment research and theory analysis indicate that gas explosion propagation characteristics in bend pipe are obviously different from that in straight pipe. So in the mine exploitation, the bend roadways should be decreased as few as possible, and preventive measures should be taken in order to diminish the loss caused by gas explosion. The research results will play an important role in the guidance of preventing gas explosion from occurring and alleviating the damage in coal mine.
机译:在实验的基础上,分析了结构异常的管道对气体爆炸传播特性的重要影响。结果表明,瓦斯爆炸在转折点处的传播是压力波,火焰和复杂流场相互作用的过程。压力波的超压和火焰传播速度迅速加速,转折点的管壁被严重破坏。弯曲角度对气体爆炸传播特性有很大影响,即,当气体爆炸通过不同角度的弯曲传播时,火焰速度和压力波超压值的变化程度不同。弯曲不仅增加了燃烧区域的湍流,从而加速了反应和速度,而且还增加了阻力和热量传递到管壁上。同时,转折点处的膨胀波抑制了气体爆炸的传播。弯曲对气体爆炸传播特性的影响取决于抑制因素和动力因素的综合影响。实验研究和理论分析表明,弯管内气体爆炸传播特性与直管内气体爆炸传播特性明显不同。因此在矿山开采中,应尽量减少弯道,并采取预防措施以减少瓦斯爆炸造成的损失。研究结果对指导预防瓦斯爆炸,减轻煤矿破坏具有重要的指导意义。

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