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首页> 外文期刊>Journal of Cleaner Production >Multi-objective deterministic and robust models for selecting optimal pipe materials in water distribution system planning under cost, health, and environmental perspectives
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Multi-objective deterministic and robust models for selecting optimal pipe materials in water distribution system planning under cost, health, and environmental perspectives

机译:多目标确定性和鲁棒性模型,可在成本,健康和环境角度下选择配水系统规划中的最佳管道材料

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摘要

By the urban growth in the societies, water distribution systems have been particularly noteworthy. Regional water authorities face a wide range of decisions related to development and replacement of water distribution systems. In this context, decisions about pipe expansion, replacement, and material selection are some of the most important decisions because they have long-term effects and it is costly and difficult to change them. In this paper, a multi-objective mathematical model is constructed based on the needs of a regional water authority and is verified by its experts. The proposed model considers environmental and health considerations in addition to costs of purchasing and installing pipes. In order to cope with uncertainties in the parameters of the model, several robust counterparts have been proposed that takes into account various types of uncertainties. The proposed models have been implemented in a case study to show their applicability and usefulness in practice. Finally, a comparison is carried out between the corresponding results. One of the proposed robust models is suggested which considers all possible uncertainties and also holds the second position in providing reasonable objective values. This research helps the decision makers in pipeline expansion and replacement projects by proposing appropriate pipe materials regarding cost, health, and environmental aspects of candidate materials even under different uncertainties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着社会的城市发展,配水系统尤其值得注意。区域水务部门面临着与水分配系统的开发和更换有关的广泛决策。在这种情况下,关于管道扩展,更换和材料选择的决策是一些最重要的决策,因为它们具有长期影响,并且成本高昂且难以更改。本文基于区域水务部门的需求构建了一个多目标数学模型,并经过专家的验证。提议的模型除了购买和安装管道的成本外,还考虑了环境和健康方面的考虑。为了应对模型参数中的不确定性,已经提出了一些鲁棒的对应项,其中考虑了各种类型的不确定性。案例研究中已经实施了建议的模型,以显示其在实践中的适用性和实用性。最后,在相应结果之间进行比较。提出了一种建议的鲁棒模型,该模型考虑了所有可能的不确定性,并且在提供合理的目标值方面也处于第二位。这项研究通过提出有关候选材料的成本,健康和环境方面的合适管道材料,甚至在不同的不确定性下,也可以帮助管道扩展和替换项目的决策者。 (C)2018 Elsevier Ltd.保留所有权利。

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