首页> 外文期刊>Journal of Water Resources Planning and Management >Effective-Power-Ranking Algorithm for Energy and Greenhouse Gas Reduction in Water Distribution Systems through Pipe Enhancement
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Effective-Power-Ranking Algorithm for Energy and Greenhouse Gas Reduction in Water Distribution Systems through Pipe Enhancement

机译:通过配管提高水分配系统能源和温室气体减排的有效功率排班算法

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摘要

Many global municipal water distribution systems (WDS) are in need of repair. To save energy and greenhouse gas emissions due to pumping, pipes that need to be replaced can be enhanced by being enlarged and made of a smoother material. To choose which pipes to thus enhance first given a limited budget, an algorithm is introduced based on enhancing the pipe that requires the most effective power, which is defined as the product of discharge, specific weight, and headloss. The algorithm was verified with complete enumeration, life- cycle, and environmental- impact modeling on seven realistic WDSs. It was found that the additional cost and greenhouse gasses (GHG) emitted from purchasing and manufacturing a larger pipe are quickly recovered by the reduced cost and GHG emissions due to less pumping being required. The proposed pipe enhancement should be verified with modeling, however, since increased payback periods for both costs and GHG emissions can result if an increase in pipe size causes water to travel a longer path. (C) 2015 American Society of Civil Engineers.
机译:许多全球市政供水系统(WDS)需要维修。为了节省由于泵送而产生的能源和温室气体排放,可以通过扩大尺寸和使用更光滑的材料来增强需要更换的管道。为了选择给定有限预算首先要增强的管道,在增强需要最有效功率的管道的基础上引入了一种算法,该算法定义为排放量,比重和水头损失的乘积。该算法已通过对7个实际WDS的完整枚举,生命周期和环境影响建模进行了验证。人们发现,购买和制造较大的管道​​所产生的额外成本和温室气体(GHG)可以通过减少所需的成本和减少温室气体排放而迅速收回,这是因为所需的抽水较少。但是,建议的管道增强应通过建模进行验证,因为如果管道尺寸的增加导致水流经更长的路径,则可能导致成本和温室气体排放的回收期延长。 (C)2015年美国土木工程师学会。

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