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基于精细自由基反应机理的丙烷裂解炉炉管CFD模拟(英文)
引用本文:张楠,邱彤,陈丙珍.基于精细自由基反应机理的丙烷裂解炉炉管CFD模拟(英文)[J].中国化学工程学报,2013,21(12):1319-1331.
作者姓名:张楠  邱彤  陈丙珍
作者单位:Institute of Process Systems Engineering, Tsinghua University, Beijing 100080, China
基金项目:Supported by the National Science&Technology Supporting Plan(2012BAF05B00);the National Basic Research Program(2012CB720500)
摘    要:In the radiant section of cracking furnace, the thermal cracking process is highly coupled with turbulent flow, heat transfer and mass transfer. In this paper, a three-dimensional simulation of propane pyrolysis reactor tube is performed based on a detailed kinetic radical cracking scheme, combined with a comprehensive rigorous computational fluid dynamics(CFD) model. The eddy-dissipation-concept(EDC) model is introduced to deal with turbulence-chemistry interaction of cracking gas, especially for the multi-step radical kinetics. Considering the high aspect ratio and severe gradient phenomenon, numerical strategies such as grid resolution and refinement, stepping method and relaxation technique at different levels are employed to accelerate convergence. Large scale of radial nonuniformity in the vicinity of the tube wall is investigated. Spatial distributions of each radical reaction rate are first studied, and made it possible to identify the dominant elementary reactions. Additionally, a series of operating conditions including the feedstock feed rate, wall temperature profile and heat flux profile towards the reactor tubes are investigated. The obtained results can be used as scientific guide for further technical retrofit and operation optimization aiming at high conversion and selectivity of pyrolysis process.

关 键 词:numerical  simulation  cracking  tube  computational  fluid  dynamics  (CFD)  detailed  radical  kinetics  
收稿时间:2012-05-22

CFD Simulation of Propane Cracking Tube Using Detailed Radical Kinetic Mechanism
ZHANG Nan;QIU Tong;CHEN Bingzhen.CFD Simulation of Propane Cracking Tube Using Detailed Radical Kinetic Mechanism[J].Chinese Journal of Chemical Engineering,2013,21(12):1319-1331.
Authors:ZHANG Nan;QIU Tong;CHEN Bingzhen
Affiliation:Institute of Process Systems Engineering, Tsinghua University, Beijing 100080, China
Abstract:In the radiant section of cracking furnace, the thermal cracking process is highly coupled with turbulent flow, heat transfer and mass transfer. In this paper, a three-dimensional simulation of propane pyrolysis reactor tube is performed based on a detailed kinetic radical cracking scheme, combined with a comprehensive rigorous computational fluid dynamics (CFD) model. The eddy-dissipation-concept (EDC) model is introduced to deal with turbulence-chemistry interaction of cracking gas, especially for the multi-step radical kinetics. Considering the high aspect ratio and severe gradient phenomenon, numerical strategies such as grid resolution and refinement, stepping method and relaxation technique at different levels are employed to accelerate convergence. Large scale of radial nonuniformity in the vicinity of the tube wall is investigated. Spatial distributions of each radical reaction rate are first studied, and made it possible to identify the dominant elementary reactions. Additionally, a series of operating conditions including the feedstock feed rate, wall temperature profile and heat flux profile towards the reactor tubes are investigated. The obtained results can be used as scientific guide for further technical retrofit and operation optimization aiming at high conversion and selectivity of pyrolysis process.
Keywords:numerical simulation  cracking tube  computational fluid dynamics(CFD)  detailed radical kinetics
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