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NUMERICAL SIMULATION OF AN INDUSTRIAL FLUID CATALYTIC CRACKING REGENERATOR

机译:工业液催化裂化再生器的数值模拟

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Fluid catalytic cracking (FCC) is one of the most important conversion processes in petroleum refineries, and FCC regenerator is a key part of an FCC unit to recover the solid catalyst activity by burning off the deposited coke on the catalyst surface. In modern FCC units, regenerator is a cylindrical vessel. Carrier gas transports the solid catalyst from the stripper and feeds the catalyst into the regenerator through catalyst distributors. The catalyst is fluidized by the air that is injected into the regenerator through air rings in the bottom part of the cylindrical vessel. A three-dimensional multi-phase, multi-species reacting flow computational fluid dynamics (CFD) model was established to simulate the flow inside an FCC regenerator. The two phases involved in the flow are gas phase and solid phase. The Euler-Euler approach, where the two phases are considered to be continuous and fully inter-penetrating, is employed. The model includes gas-solid momentum exchange, gas-solid heat exchange, gas-solid mass exchange, and chemical reactions. Chemical reactions incorporated into the model simulate the combustion of coke which is present on the catalyst surface. The simulation results show a good agreement with plant data.
机译:流体催化裂化(FCC)是石油炼油厂中最重要的转化过程之一,并且FCC再生器是FCC单元的关键部分,以通过从催化剂表面上燃烧沉积的焦炭来回收固体催化剂活性。在现代FCC单元中,再生器是圆柱形容器。载气将固体催化剂从汽提运人传送并通过催化剂分配器将催化剂进入再生器。催化剂通过空气流化,所述空气通过圆柱形容器的底部的空气环注入再生器中。建立了三维多相,多种反应流量计算流体动力学(CFD)模型,以模拟FCC再生器内的流量。流动中涉及的两相是气相和固相。采用欧拉 - 欧拉方法,其中两相被认为是连续的并且完全渗透。该模型包括气固动量交换,气体固体热交换,气体固体交换和化学反应。结合到模型中的化学反应模拟了存在于催化剂表面上的焦炭的燃烧。仿真结果显示了与植物数据的良好协议。

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