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Impact of suspended coal dusts on methane deflagration properties in a large‐scale straight duct

机译:悬浮煤粉尘对大型直管中甲烷净化性能的影响

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摘要

Knowledge about flame deflagrations in mixtures of methane and diluted coal dust assists in the prediction of fires and explosions, and in the design of adequate protective systems. This vital lack of information on the role of hybrid mixtures (methane/coal dust) is covered in this work by employing a novel Large-Scale Straight Duct (LSSD) designed specifically for this purpose. The hybrid fuel was injected along the first 8 m of the 30 m long LSSD. The results revealed that a 30 g m coal dust concentration boosted the flame travel distance, from 6.5 m to 28.5 m, and increased the over pressure rise profile to 0.135 bar. The over pressure rise (OPR), pressure wave velocity, flame intensity and the flame velocity were significantly boosted along the LSSD in the presence of 10 g m or 30 g m coal dust concentrations in the methane flame deflagrations. Finally, the high speed camera showed that the presence of the coal dust enhanced the turbulence in the front flame. Consequently, the pressure wave and flame velocities were both increased when a 10 g m coal dust concentration coexisted with a 9.5% methane concentration in the deflagration.
机译:知识约在火灾和爆炸的预测甲烷和稀煤尘协助的混合物火焰爆燃,并在足够的保护系统的设计中。这一重要缺乏对杂交混合物(甲烷/煤尘)的角色信息在该工作通过采用专门为此目的而设计的新的大型直管(LSSD)覆盖。的混合燃料被沿30米长LSSD的第一8米注入。结果表明,30克间煤尘浓度促进了火焰的行进距离,从6.5米至28.5米,而且增加了在压力升高轮廓0.135巴。过压力上升(OPR),压力波速度,火焰的强度和火焰速度在10克间或30克间煤尘浓度中的甲烷火焰爆燃存在沿LSSD显著升压。最后,高速照相机表明的煤尘存在而增强在前面火焰的湍流。因此,当有10克间煤尘浓度与在爆燃9.5%甲烷浓度并存的压力波和火焰速度均被增大。

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