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Multi-objective optimization integrated with life cycle assessment for rainwater harvesting systems

机译:雨水收集系统生命周期评估的多目标优化

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摘要

The major limitation of optimization models applied previously for rainwater harvesting (RWH) systems is the systematic evaluation of environmental and human health impacts across all the lifecycle stages. This study integrated life cycle assessment (LCA) into a multi-objective optimization model to optimize the construction areas of green rooftops, porous pavements and green lands in Beijing of China, considering the trade-offs among 24 h-interval RWH volume (Q(R)), stormwater runoff volume control ratio (R), economic cost (E-C), and environmental impacts (EI). Eleven life cycle impact indicators were assessed with a functional unit of 10,000 m(2) of RWH construction areas. The LCA results showed that green lands performed the smallest lifecycle impacts of all assessment indicators, in contrast, porous pavements showed the largest impact values except Abiotic Depletion Potential (ADP) elements. Based on the standardization results, ADP fossil was chosen as the representative indicator for the calculation of El objective in multi-objective optimization model due to its largest value in all RWH systems lifecycle. The optimization results for Q(R), R, E-C and EI were 238.80 million m(3), 78.5%, 66.68 billion RMB Yuan, and 1.05E + 16 MJ, respectively. After the construction of optimal RWH system, 14.7% of annual domestic water consumption and 78.5% of maximum daily rainfall would be supplied and controlled in Beijing, respectively, which would make a great contribution to reduce the stress of water scarcity and water logging problems. Green lands have been the first choice for RWH in Beijing according to the capacity of rainwater harvesting and less environmental and human impacts. Porous pavements played a good role in water logging alleviation (R for 67.5%), however, did not show a large construction result in this study due to the huge ADP fossil across the lifecycle. Sensitivity analysis revealed the daily maximum precipitation to be key factor for the robustness o
机译:以前用于雨水收集的优化模型的主要限制(RWH)系统是对所有生命周期阶段的环境和人类健康影响的系统评估。本研究将综合生命周期评估(LCA)进入多目标优化模型,以优化中国北京绿色屋顶,多孔路面和绿地的建设区,考虑到24 H-Interval RWH体积中的权衡(Q( R)),雨水径流量控制比率(R),经济成本(EC)和环境影响(EI)。通过RWH施工区域的10,000米(2)个功能单位评估11个生命周期的冲击指标。 LCA结果表明,绿地对比多孔路面表现出除非反对耗尽电位(ADP)元素之外的最大冲击值的最大撞击值表现为所有评估指标的最小生命周期。根据标准化结果,由于其所有RWH系统生命周期中的最大值,选择了ADP化石作为计算多目标优化模型中的EL目标的代表指标。 Q(R),R,E-C和EI的优化结果分别为238.80亿米(3),78.5%,666.6亿元人民币,分别为1.05e + 16 MJ。在北京分别在施工最佳RWH系统后,14.7%的年度耗水量和每日日落最多降雨量的78.5%,这将对降低水资源稀缺和水测井问题的压力作出巨大贡献。绿色土地已成为北京RWH的首选,根据雨水收获和较少的环境和人类影响的能力。多孔路面在水井测量中发挥了良好作用(R 67.5%),由于巨大的ADP化石穿过整个生命周期,没有显示出这项研究的大型施工结果。敏感性分析显示,日本最大降水是鲁棒性的关键因素o

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  • 来源
    《Journal of Hydrology》 |2018年第2018期|共8页
  • 作者单位

    Hohai Univ Coll Environm Minist Educ Key Lab Integrated Regulat &

    Resource Dev Shallow Nanjing 210098 Jiangsu Peoples R China;

    Hohai Univ Coll Environm Minist Educ Key Lab Integrated Regulat &

    Resource Dev Shallow Nanjing 210098 Jiangsu Peoples R China;

    Hohai Univ Coll Environm Minist Educ Key Lab Integrated Regulat &

    Resource Dev Shallow Nanjing 210098 Jiangsu Peoples R China;

    Hohai Univ Coll Environm Minist Educ Key Lab Integrated Regulat &

    Resource Dev Shallow Nanjing 210098 Jiangsu Peoples R China;

    Sun Yat Sen Univ Sch Environm Sci &

    Engn SHRCIET Guangzhou 510275 Guangdong Peoples R China;

    Hohai Univ Coll Environm Minist Educ Key Lab Integrated Regulat &

    Resource Dev Shallow Nanjing 210098 Jiangsu Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    Rainwater harvesting; Life cycle assessment; Multi-objective optimization; Water scarcity; Water logging;

    机译:雨水收获;生命周期评估;多目标优化;水资源稀缺;水井测井;

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