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Land use and public health impact assessment in a supply chain network design problem: A case study

机译:供应链网络设计问题的土地利用和公共卫生影响评估:一个案例研究

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The establishment of freight transport facilities and logistics operations in urban areas tends to create substantial public health and land use burdens, due to the high concentration of people and the limited availability of land. This paper proposes a tri-objective supply chain network design model, to address the economic, public health, and land use impacts, associated with an urban freight transport network. The capability of the proposed model and methodologies are illustrated using a case study of the freight transport network in Can Tho city, which involves the selection of raw material sourcing and product distribution locations across rural and urban areas. The metric of disability-adjusted life years (DALYs) is used to represent the overall public health impact of the transport emissions exposure in people living within 5000 m of the transportation routes. Geographical information system (GIS) tools are used to explore the population density distribution across transport network areas and to estimate the number of exposed people. The land use impact due to the presence of warehouses and plants is taken into account, using the life cycle impact assessment (LCIA) method. The obtained design solutions under single- and multi-objective optimization are presented. The trade-offs among the contradictory objectives are also analyzed to obtain various alternative solutions, allowing geographers to understand how to design environmentally benign, urban freight transport networks, based on sustainable development preferences.
机译:由于高度浓度和土地可用性,建立了城市地区的货运设施和物流业务往往会造成大量公共卫生和土地使用负担。本文提出了一种三目标供应链网络设计模型,解决与城市货运网络相关的经济,公共卫生和土地利用影响。使用CAN城市的货运运输网络的案例研究说明了所提出的模型和方法的能力,这涉及在农村和城市地区的原材料采购和产品分布位置的选择。残疾调整后的生命年度(DALYS)的指标用于代表生活在运输路线的5000米范围内的人们的整体公共卫生影响。地理信息系统(GIS)工具用于探讨运输网络区域的人口密度分布,并估计暴露的人数。考虑到由于仓库和植物的存在而导致的土地利用影响,使用生命周期影响评估(LCIA)方法。提出了所得在单个和多目标优化下的设计解决方案。还分析了矛盾目标之间的权衡,以获得各种替代解决方案,允许地理学人了解如何根据可持续发展偏好设计环境良性的城市货运网络。

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