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Modelling energy costs for different operational strategies of a large water resource recovery facility

机译:大型水资源回收设施的不同运营策略建模能源成本

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The main objective of this paper is to demonstrate the importance of applying dynamic modelling and real energy prices on a full scale water resource recovery facility (WRRF) for the evaluation of control strategies in terms of energy costs with aeration. The Activated Sludge Model No. 1 (ASM1) was coupled with real energy pricing and a power consumption model and applied as a dynamic simulation case study. The model calibration is based on the STOWA protocol. The case study investigates the importance of providing real energy pricing comparing (i) real energy pricing, (ii) weighted arithmetic mean energy pricing and (iii) arithmetic mean energy pricing. The operational strategies evaluated were (i) old versus new air diffusers, (ii) different DO set-points and (iii) implementation of a carbon removal controller based on nitrate sensor readings. The application in a full scale WRRF of the ASM1 model coupled with real energy costs was successful. Dynamic modelling with real energy pricing instead of constant energy pricing enables the wastewater utility to optimize energy consumption according to the real energy price structure. Specific energy cost allows the identification of time periods with potential for linking WRRF with the electric grid to optimize the treatment costs, satisfying operational goals.
机译:本文的主要目标是展示在充分规模水资源恢复设施(WRRF)上应用动态建模和实际能源价格的重要性,以便在曝气的能源成本方面评估控制策略。活化的污泥模型1号(ASM1)与实际能量定价和功耗模型相结合,并作为动态模拟案例研究应用。模型校准基于STOWA协议。案例研究调查了提供真正的能量定价比较(i)真实能量定价,(ii)加权算术平均能量定价和(iii)算术平均能量定价的重要性。评估的操作策略是(i)旧的与新的空气扩散器,(ii)基于硝酸盐传感器读数的碳去除控制器的不同做点和(iii)实施。在ASM1模型的全级WRRF中的应用程序与实际能源成本相结合成功。具有实际能量定价而不是恒定能量定价的动态建模使废水效用能够根据实际能源价格结构优化能源消耗。特定能源成本允许识别具有与电网连接WRRF的电位,以优化治疗成本,满足操作目标。

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