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An investigation on the performance of a FTS fixed-bed reactor using CFD methods

机译:使用CFD方法研究FTS固定床反应器的性能

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In the present work, a numerical model was developed and validated in order to simulate and improve the conversion of synthesis gas (CO + H_2) to higher hydrocarbons in a Fischer-Tropsch Synthesis (FTS) fixed-bed reactor. The reactor was a 3.1 cm diameter and 2.75 m length steel tube in which saturated water was employed to control the peak temperature within the catalyst bed. A 2-D CFD model with an optimized mesh of 22,016 square cells was developed to model hydrodynamics, chemical reaction, non-ideality of the mixture, heat and mass transfer in the reactor. Good agreement was achieved between pilot experimental data and the model. The result showed that adjusting the boiling water flow rate in the range of 25-250 g.min~(-1) allows maintaining the FTS temperature at suitable values. An optimum value of 573 K was obtained for feed temperature.
机译:在本工作中,开发了一个数值模型并进行了验证,以模拟和改进费托合成(FTS)固定床反应器中合成气(CO + H_2)向高级烃的转化。反应器是直径为3.1cm,长度为2.75m的钢管,其中使用饱和水控制催化剂床内的峰值温度。开发了具有22,016个方形单元的优化网格的二维CFD模型,以对流体动力学,化学反应,混合物的非理想性,反应器中的传热和传质建模。试验数据与模型之间取得了很好的一致性。结果表明,将沸水流速调节在25-250 g.min〜(-1)的范围内可使FTS温度保持在合适的值。获得进料温度的最佳值为573K。

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