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Optimizing water delivery system storage and its influence on air pollutant emission reduction

机译:优化供水系统存储及其对减少空气污染物排放的影响

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This paper presents a quantitative approach to estimating the carbon dioxide (CO_2) emission reduction by optimizing water storage operations in water delivery systems. This approach uses hydraulic models of water delivery systems to perform pumping energy optimization analyses with equalization water storage and identifies marginal electrical generation types based on locational marginal price (LMP) data available in open electrical markets. The marginal pollutant emission reduction has been evaluated based on pumping energy optimization, hourly marginal generation types and pollutant emission rates for different types of generation. An example is presented that applied the proposed approach to a large water delivery system in the Metro Detroit area, Michigan. The analysis results showed a daily CO_2 emission reduction of 11.7 tonnes, which accounted for approximately 3% of the total CO_2 emission produced by the electricity consumption for pumping water under the maximum day demand condition of 2012.
机译:本文提出了一种通过优化供水系统中的储水操作来估算二氧化碳(CO_2)排放量减少的定量方法。该方法使用输水系统的液压模型来执行具有均衡储水量的泵送能量优化分析,并根据开放式电力市场中可用的位置边际价格(LMP)数据来确定边际发电类型。边际污染物减排量的评估基于抽水能的优化,每小时边际发电类型以及不同发电类型的污染物排放率。给出了一个将建议的方法应用于密歇根州底特律都会区大型供水系统的示例。分析结果显示,每天的CO_2排放量减少了11.7吨,约占2012年最大日需求情况下抽水用电所产生的CO_2排放总量的3%。

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