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Improving ethylene oxide production inside microreactor by using ribbed wall
International Communications in Heat and Mass Transfer ( IF 6.4 ) Pub Date : 2021-02-26 , DOI: 10.1016/j.icheatmasstransfer.2021.105212
Nawaf Alkhamis , Majed Alhazmy

The current study presents a numerical simulation for multicomponent flow inside the Ethylene oxide microreactor channel. The catalyst surface is treated as a functional surface. The fluxes of each species are defined based on the Borman and Westerterp model. The Reynolds number in the study is below 250; therefore, the flow is laminar. The presence of V-shape ribs improves the process of ethylene oxide production inside the microreactor of ethylene oxide.



中文翻译:

通过使用肋壁提高微反应器内部环氧乙烷的生产

当前的研究为环氧乙烷微反应器通道内的多组分流动提供了数值模拟。催化剂表面被视为功能性表面。每个物种的通量是根据Borman和Westerterp模型定义的。研究中的雷诺数低于250;因此,流动是层流的。V形肋的存在改善了环氧乙烷微反应器内部环氧乙烷生产的过程。

更新日期:2021-02-26
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