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Identifying the Optimal Execution Plan for Slum Infrastructure Upgrading Projects

机译:确定贫民窟基础设施升级项目的最佳执行计划

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Infrastructure upgrading projects in slum areas face a number of challenges that are not common to those of similar projects in planned areas. These challenges stem from (1) the heavily-congested and unplanned nature of a slum, which results in a series of logistical challenges; and (2) the fact that slum dwellers reside in and around the upgrading project sites, which raises the level of resistance to project execution. As such, slum infrastructure upgrading projects face high risks of prolonged project duration and increased construction costs. This paper focuses on sanitary networks upgrading projects in slum areas. In these projects, the unplanned nature of the slum is manifested in the undocumented variations in road widths and their steep slopes as well as the ever changing urban characteristics of the area. It is common, under such conditions, for contractors to be forced to use different construction methods. Furthermore, these projects are expected to face high levels of dwellers' resistance because of the socioeconomic disturbance resulting from the construction activities. To address the aforementioned challenges, this paper proposes an automated heuristic-based planning model capable of prioritizing the upgrading phases and selecting the suitable construction methods to accelerate the delivery of service to slum dwellers. To this end, the model computes the rate of service delivery under different construction scenarios and hence accounts for the expected resistance in cases of late delivery. The model processes the urban characteristics of slum areas and topography data as well as the proposed sanitary network design in order to generate the optimal order of upgrading phases and the optimal selection of construction equipment. An application example is presented to demonstrate the use of the model and its capabilities.
机译:贫民窟地区的基础设施升级项目面临许多挑战,这些挑战与计划地区类似项目的挑战并不相同。这些挑战源于(1)贫民窟的严重拥堵和计划外性质,导致一系列后勤挑战; (2)贫民窟居民居住在升级项目现场及其周围的事实,这增加了对项目执行的抵制程度。因此,贫民窟基础设施升级项目面临着延长项目工期和增加建筑成本的高风险。本文重点关注贫民窟地区的卫生网络升级项目。在这些项目中,贫民窟的计划外性质表现为道路宽度及其陡峭坡度的无证记载变化,以及该地区不断变化的城市特征。在这种情况下,通常迫使承包商使用不同的施工方法。此外,由于施工活动造成的社会经济干扰,这些项目预计将面临居民的高度抵抗。为了解决上述挑战,本文提出了一种基于启发式的自动规划模型,该模型能够优先考虑升级阶段并选择合适的施工方法,以加快向贫民窟居民的服务交付速度。为此,该模型计算了在不同施工方案下的服务交付率,因此考虑了在延迟交付情况下的预期阻力。该模型处理贫民窟地区的城市特征和地形数据,以及提出的卫生网络设计,以生成升级阶段的最佳顺序和建筑设备的最佳选择。给出了一个应用示例,以演示模型的使用及其功能。

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