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Fluid dynamic analysis of a continuous stirred tank reactor for technical optimization of wastewater digestion

机译:用于废水消化技术优化的连续搅拌釜反应器的流体动力学分析

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Continuous stirred tank reactors (CSTR) are widely used in wastewater treatment plants to reduce the organic matter and microorganism present in sludge by anaerobic digestion. The present study carries out a numerical analysis of the fluid dynamic behaviour of a CSTR in order to optimize the process energetically. The characterization of the sludge flow inside the digester tank, the residence time distribution and the active volume of the reactor under different criteria are determined. The effects of design and power of the mixing system on the active volume of the CSTR are analyzed. The numerical model is solved under non-steady conditions by examining the evolution of the flow during the stop and restart of the mixing system. An intermittent regime of the mixing system, which kept the active volume between 94% and 99%, is achieved. The results obtained can lead to the eventual energy optimization of the mixing system of the CSTR. (C) 2014 Elsevier Ltd. All rights reserved.
机译:连续搅拌釜反应器(CSTR)广泛用于废水处理厂,以通过厌氧消化减少污泥中的有机物和微生物。本研究对CSTR的流体动力学行为进行了数值分析,以便在能量上优化工艺。确定了在不同条件下消化池内污泥的流动特性,停留时间分布和反应器的有效容积。分析了混合系统的设计和功率对CSTR有效容积的影响。通过检查混合系统停止和重新启动期间的流动演变,可以在非稳定条件下求解数值模型。实现了混合系统的间歇方案,该方案将有效体积保持在94%到99%之间。获得的结果可能导致CSTR混合系统的最终能源优化。 (C)2014 Elsevier Ltd.保留所有权利。

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