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双齿辊破碎机随机离散脉冲载荷特性 被引量:2
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作者 姚红良 常锡振 +1 位作者 纪鹏 王刚 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2017年第12期1740-1743,共4页
首先,讨论了基于生产能力的物料随机离散特性,推导了满足D3分布的颗粒容重递推公式及区间颗粒数概率计算公式;其次,分析了细颗粒物料破碎时相位失稳和相位前移现象,得出了细颗粒物料必须前移到中颗粒物料破碎段的结论;然后,建立了单次... 首先,讨论了基于生产能力的物料随机离散特性,推导了满足D3分布的颗粒容重递推公式及区间颗粒数概率计算公式;其次,分析了细颗粒物料破碎时相位失稳和相位前移现象,得出了细颗粒物料必须前移到中颗粒物料破碎段的结论;然后,建立了单次截割时截割阻力与作用时间的脉冲载荷模型,并提出了在中颗粒破碎段,用截割球体物料达到排放粒度要求的容积差与单次截割弓厚容积的比值作为完整球体物料脉冲载荷的修正系数,并给出了完整球体物料的脉冲载荷模型.最后,建立了全部组成颗粒的随机离散脉冲载荷模型. 展开更多
关键词 截割阻力 弓厚脉冲载荷 球截割脉冲载荷 颗粒随机离散
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Modeling flame propagation speed and quenching distance of aluminum dust flame with spatially random distribution of particles
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作者 Mehdi Bidabadi Alireza Khoeini Poorfar 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期81-89,共9页
In this research combustion of aluminum dust particles in a quiescent medium with spatially discrete sources distributed in a random way was studied by a numerical approach.A new thermal model was generated to estimat... In this research combustion of aluminum dust particles in a quiescent medium with spatially discrete sources distributed in a random way was studied by a numerical approach.A new thermal model was generated to estimate flame propagation speed in a lean/rich reaction medium.Flame speed for different particle diameters and the effects of various oxidizers such as carbon dioxide and oxygen on flame speed were studied.Nitrogen was considered the inert gas.In addition,the quenching distance and the minimum ignition energy(MIE) were studied as a function of dust concentration.Different burning time models for aluminum were employed and their results were compared with each other.The model was based on conduction heat transfer mechanism using the heat point source method.The combustion of single-particle was first studied and the solution was presented.Then the dust combustion was investigated using the superposition principle to include the effects of surrounding particles.It is found that larger particles have higher values of quenching distance in comparison with smaller particles in an assumed dust concentration.With the increase of dust concentration the value of MIE would be decreased for an assumed particle diameter.Considering random discrete heat sources method,the obtained results of random distribution of fuel particles in space provide closer and realistic predictions of the combustion physics of aluminum dust flame as compared with the experimental findings. 展开更多
关键词 flame propagation speed random particle distribution quenching distance random discrete combustion aluminum
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