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A review on single bubble gas–liquid mass transfer
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作者 Yuyun Bao Jinting Jia +2 位作者 Shuaifei Tong Zhengming Gao Ziqi Cai 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第11期2707-2722,共16页
It is common to empirically correlate volumetric mass transfer coefficient kLa for predicting gas–liquid mass transfer in industrial applications,and the investigation of single bubble mass transfer is crucial for a ... It is common to empirically correlate volumetric mass transfer coefficient kLa for predicting gas–liquid mass transfer in industrial applications,and the investigation of single bubble mass transfer is crucial for a detailed understanding of mass transfer mechanism.In this work,experiments,models and simulations based on the experimental results were highlighted to elucidate the mass transfer between single bubbles and ambient liquid.The experimental setups,measurement methods,the mass transfer of single bubbles in the Newtonian and the nonNewtonian liquid,models derived from the concept of eddy diffusion,the extension of Whitman’s,Higbie’s and Danckwerts’models,or dimensionless numbers,and simulation methods on turbulence,gas–liquid partition methods and mass transfer source term determination are introduced and commented on.Although people have a great knowledge on mass transfer between single bubbles and ambient liquid in single conditions,it is still insufficient when facing complex liquid conditions or some phenomena such as turbulence,contamination or non-Newtonian behavior.Additional studies on single bubbles are required for experiments and models in various liquid conditions in future. 展开更多
关键词 Gas-liguid mass transfer single bubbles Mass transfer models Simulation SURFACTANT Non-Newtonian fluid
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Dynamic behavior of gas bubble in single bubble sonoluminescence—vibrator model 被引量:4
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作者 QIAN Menglu CHENG Qian GE Caoyan(Institute of Acoustics, Tongji University Shanghai 200092) Received Feb. 24, 2002 《Chinese Journal of Acoustics》 2002年第4期296-306,共11页
Single bubble sonoluminescence is a process of energy transformation from sound to light. Therefore the motion equations of near spherical vibration of a gas bubble in an incompressible and viscous liquid can be deduc... Single bubble sonoluminescence is a process of energy transformation from sound to light. Therefore the motion equations of near spherical vibration of a gas bubble in an incompressible and viscous liquid can be deduced by Lagrangian Equation with dissipation function when the bubble is considered as a vibrator surrounded by liquid. The analytical solutions in the bubble expanding, collapsing and rebounding stages can be obtained by solving these motion equations when some approximations are adopted. And the dynamic behaviors of the bubble in these three stages are discussed. 展开更多
关键词 In Dynamic behavior of gas bubble in single bubble sonoluminescence vibrator model
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Numerical simulation of single bubble boiling behavior
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作者 Junjie Liu Guoqing Wang +3 位作者 Lijun Zhang Ying Shi Hua Zhang Shi-chune Yao 《Propulsion and Power Research》 SCIE 2017年第2期117-125,共9页
The phenomena of a single bubble boiling process are studied with numerical modeling.The mass,momentum,energy and level set equations are solved using COMSOL and temperature field in time are analyzed,and reasonable r... The phenomena of a single bubble boiling process are studied with numerical modeling.The mass,momentum,energy and level set equations are solved using COMSOL and temperature field in time are analyzed,and reasonable results are obtained.The numeral model is validated by the empirical equation of Fritz and could be used for various applications. 展开更多
关键词 single bubble Boiling heat transfer Numerical simulation Contact angle
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NUMERICAL CALCULATION OF SINGLE BUBBLE MOVEMENT AND ITS CAVITATION BEHAVIOR
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作者 Xu Wei-xin Water power Department,Hohai University,Nanjing 210024,P.R.China 《Journal of Hydrodynamics》 SCIE EI CSCD 1990年第3期63-70,共8页
This paper presents analyses and numerical calculations of a single bubble movement and its cavitation behav- ior where the influence of air diffusion,pressure fluctuation,relative velocity between the bubble and flui... This paper presents analyses and numerical calculations of a single bubble movement and its cavitation behav- ior where the influence of air diffusion,pressure fluctuation,relative velocity between the bubble and fluid and the growing bubble burst effect are considered.The calculational resuits provides rather detailed description of a single bubble movement and its cavitation behavior. 展开更多
关键词 NUMERICAL CALCULATION OF single bubble MOVEMENT AND ITS CAVITATION BEHAVIOR ITS
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Effects of Sodium Dodecyl Sulfate on a Single Cavitation Bubble
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作者 王奇 陈伟中 +1 位作者 王寻 赵太阳 《Chinese Physics Letters》 SCIE CAS CSCD 2018年第8期40-43,共4页
Dynamics of a single cavitation bubble in sodium dodecyl sulfate(SDS) aqueous solutions is investigated experimentally and theoretically. The bubble pulsation is measured by a phase-locked integrated imaging techniq... Dynamics of a single cavitation bubble in sodium dodecyl sulfate(SDS) aqueous solutions is investigated experimentally and theoretically. The bubble pulsation is measured by a phase-locked integrated imaging technique,and the ambient radius is obtained by fitting the numerical calculation based on the Rayleigh–Plesset bubble dynamics model to the experimental data. The results show that, under the same driving condition, the ambient radius of the cavitation bubble decreases correspondingly with the increase of SDS concentration within the critical micelle concentration, while the compression ratio of the radius increases, which indicates that the addition of SDS decreases the internal molecular number of the cavitation bubble and increases the power capability of the cavitation bubble. In addition, bubble oscillation increases the concentration of the surfactant molecules on the bubble wall, so that the effect of SDS on a single cavitation bubble is reduced when the SDS concentration is greater than 0.8 m M. 展开更多
关键词 SDS Effects of Sodium Dodecyl Sulfate on a single Cavitation bubble
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Simulation of bubble breaking process in a jet mixing reactor for desulfurization of molten iron
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作者 Chao Lv Xu-xin Chen +3 位作者 Zhao-xiang Ji Hong-liang Zhao Tao Yang Lin-hui Yu 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2023年第6期1117-1127,共11页
The gas–liquid flow behavior of the stirred flow field,the different positions of a single bubble,the initial velocity,the surface tension and the agglomeration of multiple bubbles were studied by CFD numerical simul... The gas–liquid flow behavior of the stirred flow field,the different positions of a single bubble,the initial velocity,the surface tension and the agglomeration of multiple bubbles were studied by CFD numerical simulation.The results show that the pressure distribution and velocity distribution inside the fluid during agitation indicate that the velocity difference between the liquid and the gas phase and the collision between the bubbles caused by the turbulent behavior of the liquid are the important conditions leading to the bubble breakage.Different initial bubble positions and initial bubble velocities have important effects on single bubble breakage.The surface tension is an important condition that affects the bubble breakage.When the surface tension coefficient is 0.7,the bubble will be stretched to the smallest degree;when the surface tension coefficient is 0.1,the bubble will be stretched to the largest degree and it will be easily broken into smaller bubbles.The multi-bubble results show the states and trajectories of coalescence between bubbles.The research results can provide data support for the engineering application of desulfurization process and theoretical guidance for the research of bubble breaking mechanism. 展开更多
关键词 DESULFURIZATION Molten iron single bubble bubble breakage Numerical simulation Convergence
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Modeling of single film bubble and numerical study of the plateau structure in foam system
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作者 孙中国 倪妮 +1 位作者 孙一颉 席光 《Journal of Hydrodynamics》 SCIE EI CSCD 2018年第1期79-86,共8页
The single-film bubble has a special geometry with a certain amount of gas shrouded by a thin layer of liquid film under the surface tension force both on the inside and outside surfaces of the bubble. Based on the me... The single-film bubble has a special geometry with a certain amount of gas shrouded by a thin layer of liquid film under the surface tension force both on the inside and outside surfaces of the bubble. Based on the mesh-less moving particle semi-implicit(MPS) method, a single-film double-gas-liquid-interface surface tension(SDST) model is established for the single-film bubble,which characteristically has totally two gas-liquid interfaces on both sides of the film. Within this framework, the conventional surface free energy surface tension model is improved by using a higher order potential energy equation between particles, and the modification results in higher accuracy and better symmetry properties. The complex interface movement in the oscillation process of the single-film bubble is numerically captured, as well as typical flow phenomena and deformation characteristics of the liquid film.In addition, the basic behaviors of the coalescence and connection process between two and even three single-film bubbles are studied, and the cases with bubbles of different sizes are also included. Furthermore, the classic plateau structure in the foam system is reproduced and numerically proved to be in the steady state for multi-bubble connections. 展开更多
关键词 single film bubble mesh-less moving particle semi-implicit(MPS) modeling plateau structure
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