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Experimental and numerical investigations on micromixing performance of multi-orifice cross-flow jet mixers
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作者 Hang Yang Zhaojin Lu +4 位作者 Likun Ma Wei Yin Bingjie Wang Zhishan Bai Xiaoyong Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期63-72,共10页
Multi-orifice cross-flow jet mixers(MOCJMs)are used in various industrial applications due to their excellent mixing efficiency,but few studies have focused on the micromixing performance of MOCJMs.Herein,the flow cha... Multi-orifice cross-flow jet mixers(MOCJMs)are used in various industrial applications due to their excellent mixing efficiency,but few studies have focused on the micromixing performance of MOCJMs.Herein,the flow characteristics and micromixing performance inside the MOCJM were investigated using experiments and computational fluid dynamics(CFD)simulations based on the Villermaux/Dushman system and the finite-rate/modified eddy-dissipation model.The optimal A value was correlated with the characteristic parameters of MOCJMs to develop a CFD calculation method applicable to the study of the micromixing performance of the MOCJMs.Then the micromixing efficiency was evaluated using the segregation index XS,and the effects of operational and geometric parameters such as mixing flow Reynolds number(ReM),flow ratio(RF),total jet area(ST),the number of jet orifices(n),and outlet configuration on the micromixing efficiency were investigated.It was found that the intensive turbulent region generated by interactions between jets,as well as between jets and crossflows,facilitated rapid reactions.XS decreased with increasing ReM and decreasing RF.Furthermore,MOCJMs with lower ST,four jet orifices,and the narrower outlet configuration demonstrated a better micromixing efficiency.This study contributes to a deeper understanding of the micromixing performance of MOCJMs and provides valuable guidance for their design,optimization,and industrial application. 展开更多
关键词 Multi-orifice cross-flow jet mixer Micromixing performance finite-rate/modified eddy dissipation model Computational fluid dynamics Villermaux/Dushman reaction
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Numerical simulation of three-dimensional combustion flows 被引量:1
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作者 TAN Zhi-yong MU Yong ZHENG Hong-tao 《Journal of Marine Science and Application》 2005年第3期42-46,共5页
A finite-rate method is used to simulate the three-dimensional combustion process in a plasma generator with CH4 as the fuel. The simulation was run with RNG k-ε model to simulate turbulence, with eddy-dissipation-co... A finite-rate method is used to simulate the three-dimensional combustion process in a plasma generator with CH4 as the fuel. The simulation was run with RNG k-ε model to simulate turbulence, with eddy-dissipation-concept (EDC) model to simulate the combustion and with discrete ordinates model to simulate radiation. The numerical results show that the flow field characteristics and the parameter distributions are under the condition of rich fuels, and these results provide valuable information when optimizing the plasma generator design and organizing its flow fields. 展开更多
关键词 plasma generator turbulent flow finite-rate reaction discrete ordinates model numerical simulation
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不同化学反应模型在鼓式燃气换热器建模中的应用研究 被引量:2
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作者 王恭良 《制冷与空调》 2021年第5期15-20,31,共7页
基于计算流体力学(CFD),以一款鼓式燃气换热器(DGH)为研究对象,比较Eddy-Dissipation(ED)模型和Finite-Rate/Eddy-Dissipation(FR/ED)模型用于DGH燃烧建模的不同。分别采用k-ω模型和Discrete Ordinates模型计算湍流和辐射换热。通过与... 基于计算流体力学(CFD),以一款鼓式燃气换热器(DGH)为研究对象,比较Eddy-Dissipation(ED)模型和Finite-Rate/Eddy-Dissipation(FR/ED)模型用于DGH燃烧建模的不同。分别采用k-ω模型和Discrete Ordinates模型计算湍流和辐射换热。通过与试验结果对标以及模型之间的对比,分析ED模型和FR/ED模型的优劣。结果表明,两者在分析DGH上具有相似的结果,但是ED模型所占计算资源更少,FR/ED模型具有更高的计算精度。 展开更多
关键词 鼓式燃气换热器 计算流体力学 eddy-dissipation模型 finite-rate/eddy-dissipation模型 燃烧
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Simulation of underexpanded supersonic jet flows with chemical reactions 被引量:12
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作者 Fu Debin Yu Yong Niu Qinglin 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第3期505-513,共9页
To achieve a detailed understanding of underexpanded supersonic jet structures influenced by afterburning and other flow conditions, the underexpanded turbulent supersonic jet with and without combustions are investig... To achieve a detailed understanding of underexpanded supersonic jet structures influenced by afterburning and other flow conditions, the underexpanded turbulent supersonic jet with and without combustions are investigated by computational fluid dynamics (CFD) method. A program based on a total variation diminishing (TVD) methodology capable of predicting complex shocks is created to solve the axisymmetric expanded Navie^Stokes equations containing transport equations of species. The finite-rate ratio model is employed to handle species sources in chemical reactions. CFD solutions indicate that the structure of underexpanded jet is typically influenced by the pressure ratio and afterburning. The shock reflection distance and maximum value of Mach number in the first shock cell increase with pressure ratio. Chemical reactions for the rocket exhaust mostly exist in the mixing layer of supersonic jet flows. This tends to reduce the intensity of shocks existing in the jet, responding to the variation of thermal parameters. 展开更多
关键词 COMBUSTION finite-rate model Numerical simulation TVD method Underexpanded jet
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