Affiliation:
1. Wuhan University of Technology
2. Hubei University of Arts and Science
3. Sichuan University of Science and Engineering
Abstract
Abstract
In urban water supply systems, pump stations are the hubs for making the complete systems operate regularly as well as the main energy-consuming units. In order to address the current problems of water supply systems, such as high energy consumption and low efficiency of the pump station operation, large fluctuations of liquid levels of the clean water reservoirs, and poor response and adaptability to disturbance events, a digital twin (DT)-based full-process dynamic pump station scheduling method for energy-saving optimization in water purification plants was proposed in this study. To be specific, the DT technology was introduced to monitor production disturbance in real time, trigger the rescheduling process in time, and make a fast response to disturbance events during production, so as to provide technical and methodological support for unattended pump stations. The results of experiments revealed that an average energy-saving rate of 9.78% could be achieved by using the proposed method on the premise of ensuring the full-process dynamic water balance. In addition, the method could maintain high efficiency during the operation of the pumps, and guarantee the safety and stability of the pump stations.
Publisher
Research Square Platform LLC
Reference34 articles.
1. Blinco, L.J., Simpson, A.R., Lambert, M.F., et al., 2014.Genetic algorithm optimization of operational costs and greenhouse gas emissions for water distribution systems. Procedia. Eng. 89, 509–516. https://doi.org/10.1016/j.proeng.2014.11.246.
2. Genetic optimization toward operation of water intake-supply pump stations system;Chen W;J. Clean. Prod.,2021
3. Overhauls in water supply systems in Ukraine: a hydro-economic model of socially responsible planning and cost management;Papagiannis F;J. Clean. Prod.,2018
4. A convex mathematical program for pump scheduling in a class of branched water networks;Bonvin G;Appl. Energy.,2016
5. Efficiency achievement in water supply system-A review;Coelho B;Renew. Sustain. Energy. Rev.,2014