首页> 外文会议>Energy and Water Conference >CREATING NEW REVENUE WITH EXISTING PROCESSES: EVALUATING GRID BALANCE? WITH DEMAND-SIDE LOADS AT WASTEWATER TREATMENT PLANTS USING DYNAMIC MODELING
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CREATING NEW REVENUE WITH EXISTING PROCESSES: EVALUATING GRID BALANCE? WITH DEMAND-SIDE LOADS AT WASTEWATER TREATMENT PLANTS USING DYNAMIC MODELING

机译:使用现有流程创建新收入:评估网格余额?使用动态建模的废水处理厂需求侧载荷

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The electricity system requires real-time balancing through Grid Balance? traditionally provided by generation, but recently provided by demand-side loads. ENBALA Power Networks' platform enables loads at wastewater treatment plants to provide this service, specifically aeration basin blowers due to the large duty load, process flexibility, and available process storage. Grid Balance was demonstrated using dynamic modeling and simulation software GPS-X (Hydromantis ESS Inc., Hamilton, Ontario, Canada, 2012). Models of wastewater treatment processes are used to demonstrate how demand-side loads can be connected to the grid to generate revenue, help the electricity systems run more efficiently, provide reliability, and lengthen the lifespan of existing infrastructure while reducing greenhouse gases. The models demonstrated that Grid Balance did not affect the process and maintained fully treated wastewater for discharge. Mechanics of blower operation were determined to be typical in terms of the frequency and the size of the power change request.
机译:电力系统需要通过网格平衡进行实时平衡?传统上由一代提供,但最近由需求侧负荷提供。 Enbala Power Networks的平台可以在废水处理设备上负载,以提供这项服务,专门曝气盆地鼓风机,由于占载荷,工艺灵活性和可用的过程存储。使用动态建模和仿真软件GPS-X(Hydomantis Ess Inc.,Hamilton,安大略省,加拿大,2012),证明了网格平衡。废水处理过程的模型用于证明需求侧负荷如何连接到电网以产生收入,帮助电力系统更有效地运行,提供可靠性,并在减少温室气体时延长现有基础设施的寿命。该模型表明,网格平衡不影响该过程,并保持完全处理的废水进行排放。在功率变化请求的频率和尺寸方面,确定鼓风机操作的机制是典型的。

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