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New method to design large scale high-recirculation airlift reactors

机译:设计大型高循环气升式反应堆的新方法

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摘要

High-Recirculation Airlift-Reactors are efficient for treating wastewater. They use air to push a mixture around a reactor and to provide oxygen for biological microorganisms. Design methods have been limited in functionality and accuracy and have needed significant expert input and interpretation. This paper describes the creation of new structured methods that are faster and more efficient. Models and calculations are described. Improvements are made by analysing and improving the steady-state models of fluid dynamics within a High-Recirculation Airlift-Reactor. The models also deliver information about reactor design, especially which parameters to modify to reach a steady state result. Two-phase flow of water and air is modelled for an airlift bioreactor and applied to High-Recirculation Airlift-Reactors. Tests show that varying superficial gas velocity or simultaneously varying down comer and riser diameters can create a steady-state solution. The research investigated High-Recirculation Airlift-Reactors and the associated ICI design program, created a new design program to replace it and then improved it using simple models of steady state fluid dynamics. Mathematical models are used to forecast steady-state situations in the High-Recirculation Airlift-Reactor for specific gas or liquid flow rates and for various constructions. Experimental relationships forecast mass transfers between gas and liquid phases and they predict flow.
机译:高循环空运反应器可有效处理废水。他们利用空气推动反应器周围的混合物,并为生物微生物提供氧气。设计方法的功能和准确性受到限制,并且需要大量的专家意见和解释。本文介绍了更快,更高效的新结构化方法的创建。描述了模型和计算。通过分析和改进高循环空运反应器内流体动力学的稳态模型来进行改进。这些模型还提供有关反应堆设计的信息,尤其是要修改哪些参数以达到稳定状态的结果。为气举生物反应器建模了水和空气的两相流模型,并将其应用于高循环气举反应器。测试表明,改变表观气体速度或同时改变下弯管和立管的直径可以创建稳态解决方案。该研究调查了高循环空运反应器和相关的ICI设计程序,创建了一个新的设计程序来代替它,然后使用稳态流体动力学的简单模型对其进行了改进。数学模型用于预测特定气体或液体流速以及各种结构的高循环空运反应器中的稳态情况。实验关系预测气相和液相之间的质量传递,并预测流量。

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  • 作者

    Sanders David;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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