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筛孔塔板浓度场的测量与模拟 被引量:5
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作者 孙志民 刘春江 +1 位作者 袁希钢 余国琮 《化工学报》 EI CAS CSCD 北大核心 2006年第8期1877-1883,共7页
通过测量被纯氧饱和的水在塔板上发生氧解吸时液相氧浓度,得到了伴有传质的浓度场,并发现在速度返流区会出现浓度旋涡.使用计算传质学的方法对塔板浓度场进行了数值模拟,计算值与实验值符合得较好.通过模拟,同时得到了湍流传质扩散系数... 通过测量被纯氧饱和的水在塔板上发生氧解吸时液相氧浓度,得到了伴有传质的浓度场,并发现在速度返流区会出现浓度旋涡.使用计算传质学的方法对塔板浓度场进行了数值模拟,计算值与实验值符合得较好.通过模拟,同时得到了湍流传质扩散系数的分布. 展开更多
关键词 浓度场 计算传质学(cmt) 测量 筛板塔 湍流传质扩散系数
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化工计算传质学的一个改进模型 被引量:2
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作者 孙志民 袁希钢 +1 位作者 刘春江 余国琮 《南京工业大学学报(自然科学版)》 CAS 2006年第1期5-10,共6页
计算传质学模型由浓度输运方程及其封闭方程和相应的计算流体力学模型组成。使用这一模型可同时计算出湍流传质扩散系数、三维浓度场和速度场分布。但刘伯潭提出的传质封闭方程c2-cε模式,形式复杂而且其模型常数均直接借鉴于传热研究;... 计算传质学模型由浓度输运方程及其封闭方程和相应的计算流体力学模型组成。使用这一模型可同时计算出湍流传质扩散系数、三维浓度场和速度场分布。但刘伯潭提出的传质封闭方程c2-cε模式,形式复杂而且其模型常数均直接借鉴于传热研究;此外,由于计算流体力学模型对最终浓度场的预测结果有着重要的影响,所以有对其进一步改进的必要。文中对传质封闭方程进行了简化并重新确定了模型常数,而且对计算流体力学模型进行了改进使其预测结果与文献中的实验值符合得更好。通过与文献中的湍流传质扩散系数及浓度值的比较,证明了这一简化的可行性。 展开更多
关键词 c^2^--εc模型 湍流传质扩散系数 模拟 筛板塔
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Simulation of CO<sub>2</sub>and H<sub>2</sub>S Removal Using Methanol in Hollow Fiber Membrane Gas Absorber (HFMGA)
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作者 Majid Mahdavian Hossein Atashi +1 位作者 Morteza Zivdar Mahmood Mousavi 《Advances in Chemical Engineering and Science》 2012年第1期50-61,共12页
Application of methanol solvent for physical absorption of CO2 and H2S from CO2/H2S/CH4 mixture in gas–liquid hollow fiber membrane gas absorber (HFMGA) was investigated. A computational mass transfer (CMT) model for... Application of methanol solvent for physical absorption of CO2 and H2S from CO2/H2S/CH4 mixture in gas–liquid hollow fiber membrane gas absorber (HFMGA) was investigated. A computational mass transfer (CMT) model for simulation of HFMGA in the case of simultaneous separation of CO2 and H2S was developed. The membrane gas absorber model explicitly calculates for the rates of mass transfer through the membrane and components concentration profiles. Due to the lack of experimental data in the literature, the model was validated using available individual components’ water absorption data. The numerical predictions were in good agreement with the experimental data. The effects of operating conditions such as liquid velocity, gas velocity, temperature and pressure were analyzed. It is shown that methanol solvent can successfully be used for CO2 and H2S removal in membrane gas absorber. Also it is found that the concentration distribution of CO2 and H2S in the gas phase along the fiber length obeys plug flow model whereas in the methanol absorbent deeply affected by the interface concentration, absorbent velocity and diffusivity. In addition, it is shown that application of membrane gas absorber using methanol absorbents for H2S removal and at higher flow rate is more efficient. Moreover, at operating pressures above 10 atm even at low absorbent rate, H2S concentration depletion is relatively complete while at 1 atm this value is about 30%. This means that removal efficiency decreases with an increase in temperature and it is more important especially for H2S. 展开更多
关键词 computational mass transfer (cmt) Membrane GAS ABSORBER CO2 and H2S Separation Physical Absorption METHANOL
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