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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Graph-based network modeling and simulation of condensers in once-through cooling water system under the effect of biofouling formation
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Graph-based network modeling and simulation of condensers in once-through cooling water system under the effect of biofouling formation

机译:基于图形的基于图形的网络建模和磁化器中的冷凝器模拟,在生物污染形成下的效果下

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This paper presents the modeling and simulation of a once-through steam condenser system dominated by biofouling in order to describe the behavior of an entire cooling system in power plants. A biofilm deposition model was fitted with experimental data and expanded in order to consider the effect of the temperature and substrate concentration. The proposed model is able to describe the behavior of the system during a fixed operation horizon where the effects of the temperature and water quality are associated to a biofouling rate model. The modeling employs a graph-based network approach to include in the analysis the pump water supply, the associated pipes, and the steam condenser itself. The fouling analysis encompasses thermal and hydraulic effects, i.e. the model can describe the impact of the fouling layer in the reduction of the overall heat transfer coefficient, but also in the increase in the flow resistance associated to the reduction of the free flow area and the increase of surface roughness. The importance of adopting the proposed model is demonstrated by the analysis of two different scenarios: a short-term simulation corresponding to the beginning of an operational run and a long term simulation of two years of operation.
机译:本文介绍了由生物纺线支配的一次通过蒸汽冷凝器系统的建模和仿真,以描述发电厂的整个冷却系统的行为。生物膜沉积模型配有实验数据并扩展以考虑温度和底物浓度的效果。所提出的模型能够在固定操作地平线期间描述系统的行为,其中温度和水质的效果与生物膨胀率模型相关联。该建模采用基于图形的网络方法来包括在分析泵供水,相关管道和蒸汽冷凝器本身中。污垢分析包括热和液压效应,即模型可以描述结垢层在整体传热系数的降低中的影响,也可以在流动阻力的增加中,与自由流动​​区域的减少相关表面粗糙度的增加。通过对两个不同场景的分析来证明采用所提出的模型的重要性:与操作运行开始的短期模拟,以及两年的操作的长期模拟。

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