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A realistic dynamic blower energy consumption model for wastewater applications

机译:用于废水应用的逼真的动态鼓风机能耗模型

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At wastewater treatment plants (WWTPs) aeration is the largest energy consumer. This high energy consumption requires an accurate assessment in view of plant optimization. Despite the ever increasing detail in process models, models for energy production still lack detail to enable a global optimization of WWTPs. A new dynamic model for a more accurate prediction of aeration energy costs inactivated sludge systems, equipped with submerged air distributing diffusers (producing coarse or fine bubbles) connected via piping to blowers, has been developed and demonstrated. This paper addresses the model structure, its calibration and application to the WWTP of Mekolalde (Spain). The new model proved to give an accurate prediction of the real energy consumption by the blowers and captures the trends better than the constant average power consumption models currently being used. This enhanced prediction of energy peak demand, which dominates the price setting of energy, illustrates that the dynamic model is preferably used in multi-criteria optimization exercises for minimizing the energy consumption.
机译:在废水处理厂(WWTP),曝气是最大的能源消耗。考虑到工厂优化,这种高能耗需要准确评估。尽管过程模型中的细节越来越多,但是能源生产的模型仍然缺乏细节,无法实现污水处理厂的全球优化。已经开发并展示了一种新的动力学模型,用于更准确地预测灭活污泥系统的曝气能耗,该模型配备了通过管道与鼓风机连接的浸没式空气分配扩散器(产生粗大或细小的气泡)。本文讨论了模型结构,其标定及其在西班牙Mekolalde污水处理厂的应用。与当前使用的恒定平均功耗模型相比,新模型被证明可以准确地预测鼓风机的实际能耗,并且可以更好地捕获趋势。能源峰值需求的这种增强的预测支配着能源的价格设定,说明了动态模型最好在多准则优化练习中使用,以最大程度地降低能源消耗。

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