基于泰勒-色散近似新应用的固定床反应器降阶模型

Paul H. Gusciora, A. Foss
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引用次数: 1

摘要

固定床反应器中的泰勒分散是由流动的反应物流与催化剂颗粒和反应器壁的固定热容之间的热交换引起的。泰勒近似将表示稳态能量平衡偏差的双曲型偏微分方程转化为包含对流和扩散的单一抛物型偏微分方程。本文开发的混合泰勒扩散模型将空间变化的反应产热纳入抛物型偏微分方程,并将其与流体上的物质平衡耦合。该模型的三阶或四阶空间离散化可以很好地逼近频率响应,并用于在线控制和优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Reduced-Order Model of a Fixed-Bed Reactor based on Novel Application of the Taylor-Dispersion Approximation
Taylor dispersion in a fixed bed reactor results from heat exchange between the flowing reactant stream and the fixed thermal capacitances of the catalyst particles and reactor wall. The Taylor approximation transforms the hyperbolic partial differential equations representing deviations of the energy balance from steady-state into a single parabolic partial differential equation encompassing convection and diffusion. The hybrid Taylor diffusion model developed here incorporates spatially varying heat generation by reaction into the parabolic partial differential equation and couples it to a material balance on the fluid. A third or fourth order spatial discretization of this model provides a good approximation of the frequency response, and was used for online control and optimization.
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