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Numerical Method and Its Application to Coupled System with Chemical Reaction, Fluid Flow and Heat Transfer: A Case Study of Shell-and-Tube Reactor

机译:用化学反应,流体流动和传热耦合系统的数值方法及其应用 - 以壳管反应器为例

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A new method of collaborative simulation of chemical reaction, fluid flow and heat transfer based on OpenFOAM is proposed. Then a case study of shell-and-tube reactor for a single shell and several reaction tubes pass reactor with a variable number of baffles and turbulent flow is performed. The results are observed to be sensitive to the turbulence model selection. The best turbulence model among the ones considered is determined by comparing the CFD results of heat transfer coefficient, outlet temperature and pressure drop with the Bell -- CDelaware method results. For two baffle cut values, the effect of the baffle spacing to shell diameter ratio on the heat exchanger performance is investigated by varying flow rate. The temperature distribution of the reaction tube is influenced by thermal environment of both shell and tube side, and optimizing the fluid flow in shell side to conform to the exothermic characteristics of the reaction tube can effectively improve the temperature uniformity of the reaction tubes.
机译:提出了一种新的基于OppoFoam的化学反应,流体流动和热传递的协作模拟方法。然后,进行用于单个壳的壳管反应器的壳体反应器和几个反应管通过反应器的挡板和湍流进行湍流。观察结果对湍流模型选择敏感。通过将传热系数,出口温度和压降的CFD结果与Bell Cdelaware方法结果进行比较来确定所考虑的最佳湍流模型。对于两个挡板切口,通过不同的流速研究了挡板间距对壳体直径比对热交换器性能的影响。反应管的温度分布受壳和管侧的热环境的影响,并优化壳侧的流体流动以符合反应管的放热特性,可以有效地提高反应管的温度均匀性。

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