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灰熔聚流化床气化炉内气固混合特性的CFD模拟
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作者 武小芳 张立峰 林忠伟 《内蒙古师范大学学报(自然科学汉文版)》 CAS 北大核心 2016年第4期492-496,共5页
结合颗粒动力学理论,采用欧拉双流体模型,利用CFD软件FLUENT,模拟了灰熔聚流化床气化炉内气固两相流的混合行为.用图例展示了不同流化气速和喷动气速下床内颗粒的体积浓度分布、颗粒速度分布和压力降,剖析了流化气速和喷动气速的改变对... 结合颗粒动力学理论,采用欧拉双流体模型,利用CFD软件FLUENT,模拟了灰熔聚流化床气化炉内气固两相流的混合行为.用图例展示了不同流化气速和喷动气速下床内颗粒的体积浓度分布、颗粒速度分布和压力降,剖析了流化气速和喷动气速的改变对颗粒混合特性和压降特性的影响. 展开更多
关键词 灰熔聚流化床化炉 气固混合特性 流化 喷动 CFD模拟
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灰熔聚气化炉内气体与固体混合特性的研究
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作者 范岭 王鹏 马素霞 《山西化工》 2012年第3期33-35,46,共4页
气化炉内的气化剂与煤粉的混合特性直接影响着气化炉内的碳转化率和灰熔聚流化床气化炉的热效率。研究气化炉内气体和固体颗粒的混合特性,掌握炉内气体和固体颗粒的轴向和径向的运动规律,对认识床内传热和传质机理具有重要的意义。基于... 气化炉内的气化剂与煤粉的混合特性直接影响着气化炉内的碳转化率和灰熔聚流化床气化炉的热效率。研究气化炉内气体和固体颗粒的混合特性,掌握炉内气体和固体颗粒的轴向和径向的运动规律,对认识床内传热和传质机理具有重要的意义。基于欧拉双流体模型,结合颗粒动力学理论,应用商用FLUENT软件,对太原化学工业集团有限公司运行的灰熔聚流化床气化炉内的气体与固体的混合特性进行了数值模拟。 展开更多
关键词 灰熔聚流化床化炉 气固混合特性 喷动
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Micromixing characteristics in a gas-liquid-solid stirred tank with settling particles 被引量:3
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作者 栗万博 耿兴业 +1 位作者 包雨云 高正明 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第3期461-470,共10页
The parallel-competing iodide-iodate reaction scheme was used to study the micromixing performance in a multi-phase stirred tank of 0.3 m diameter.The impeller combination consisted of a half elliptical blade disk tur... The parallel-competing iodide-iodate reaction scheme was used to study the micromixing performance in a multi-phase stirred tank of 0.3 m diameter.The impeller combination consisted of a half elliptical blade disk turbine below two down-pimping wide-blade hydrofoils,identified as HEDT + 2WH_D.Nitrogen and glass beads of100 μm diameter and density 2500 kg-m^(-3) were used as the dispersed phases.The micromixing could be improved by sparging gas because of its additional potential energy.Also,micromixing could be improved by the solid particles with high kinetic energy near the impeller tip.In a gas-solid-liquid system,the gas-liquid film vibration with damping,due to the frequent collisions between the bubbles and particles,led to the decrease of the turbulence level in the liquid and caused eventually the deterioration of the micromixing.A Damping Film Dissipation model is formulated to shed light on the above micromixing performances.At last,the micromixing time t_m according to the incorporation model varied from 1.9 ms to 6.7 ms in our experiments. 展开更多
关键词 Stirred tank Gas-liquid-solid Micromixing performance Incorporation model
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The constant-volume propagating spherical flame method for laminar flame speed measurement 被引量:6
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作者 Mahdi Faghih 陈正 《Science Bulletin》 SCIE EI CAS CSCD 2016年第16期1296-1310,共15页
Laminar flame speed is one of the most important intrinsic properties of a combustible mixture. Due to its importance, different methods have been developed to measure the laminar flame speed. This paper reviews the c... Laminar flame speed is one of the most important intrinsic properties of a combustible mixture. Due to its importance, different methods have been developed to measure the laminar flame speed. This paper reviews the constant-volume propagating spherical flame method for laminar flame speed measurement. This method can be used to measure laminar flame speed at high pressures and temperatures which are close to engine-relevant conditions. First, the propagating spherical flame method is introduced and the constant-volume method (CVM) and constant- pressure method (CPM) are compared. Then, main groups using the constant-volume propagating spherical flame method are introduced and large discrepancies in laminar flame speeds measured by different groups for the same mixture are identified. The sources of discrepancies in laminar flame speed measured by CVM are discussed and special attention is devoted to the error encountered in data processing. Different correlations among burned mass fraction, pressure, temperature and flame speed, which are used by different researchers to obtain laminar flame speed, are summarized. The performance of these correlations are examined, based on which recommendations are given. Finally, recommendations for future studies on the con- stant-volume propagating spherical flame method for laminar flame speed measurement are presented. 展开更多
关键词 Laminar flame speed Propagatingspherical flame Constant-volume method Burnedmass fraction Methane/air
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