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首页> 外文期刊>AIChE Journal >Development of Liquid-Phase Agitated Reactors: Synthesis, Simulation, and Scaleup
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Development of Liquid-Phase Agitated Reactors: Synthesis, Simulation, and Scaleup

机译:液相搅拌反应器的开发:合成,模拟和放大

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A systematic procedure is formulated is formulated for the development of liquid-phase agitated reactors. The procedure has three components: synthesis, simulation, and scaleup. Synthesis leads the user to the reactor geometry, agitator type and speed, number and location of feed addition ports, feed addition or residence time, and heat-transfer policy that would achieve the desired performance objectives. It is based on an analysis of the interplay of reaction and mixing at various length scales, and a knowledge base of the capacities of heat-transfer equipment. Simulation assesses the performance of the reactors thus synthesized, taking into account detailed flow properties obtained through computational fluid dynamic simulations, experimental data, or a combination of both. Scaleup provides fundamentally based scaleup rules for direct development of these reactors from laboratory scale to production scale. A comparison of these derived scaleup rules with published empirical rules reveals the underlying physics, applicability, and limitations of these empirical rules. Three examples are presented to illustrate the use of this procedure.
机译:制定了开发液相搅拌反应器的系统程序。该过程包括三个部分:综合,模拟和放大。合成使用户想到反应器的几何形状,搅拌器的类型和速度,进料口的数量和位置,进料的添加或停留时间以及传热策略,这些都可以实现所需的性能目标。它基于对各种长度尺度的反应和混合相互作用的分析,以及有关传热设备容量的知识库。模拟考虑了通过计算流体动力学模拟,实验数据或两者结合获得的详细流动特性,从而评估了由此合成的反应器的性能。规模化为这些反应器从实验室规模到生产规模的直接开发提供了基于根本的规模化规则。将这些导出的放大规则与已发布的经验规则进行比较,可以发现这些经验规则的基本物理原理,适用性和局限性。提供了三个示例来说明此过程的用法。

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