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Decision Aids for Sewer Pipeline Installation and Rehabilitation

机译:下水道管道安装和修复的决策辅助

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摘要

Sewer systems form a vital component of the. municipal infrastructure in the United States. Many of the sewer systems in the US were constructed during the turn of the 20th century and are reaching the end stages of their design life. Sewer systems are eroding due to aging, excessive demand, misuse, exposure, and neglect (NSF 1993, NSF 1995). Trenchless technology (TT) consists of a wide range of methods, materials, and equipment to install new or to rehabilitate existing underground pipelines and utility systems with minimal excavation of the ground. The development, selection, and utilization of trenchless technology (TT) has expanded rapidly over the past ten years. The reason for this exceptional growth is the desire to install or rehabilitate underground pipeline systems with minimum impact on society and the environment. The benefits of trenchless technology are quite apparent when compared to the conventional open-cut process. However, it is necessary to evaluate, the suitability and appropriateness of any rehabilitation system, trenchless or otherwise, on a project to project basis by considering all the criteria and subcriteria important for the decision task. This paper presents a framework for a decision support system to assist construction managers in selecting the most appropriate technology for a project by systematically evaluating five groups of criteria and subcriteria with respect to the knowledge based preference of the user and the project specific situation.
机译:下水道系统是其中的重要组成部分。美国的市政基础设施。美国的许多下水道系统是在20世纪初建造的,目前已进入设计寿命的最后阶段。下水道系统由于老化,过度需求,滥用,暴露和忽视而受到侵蚀(NSF 1993,NSF 1995)。无槽技术(TT)由多种方法,材料和设备组成,可在不增加地面开挖的情况下安装新的或修复现有的地下管线和公用事业系统。在过去十年中,非开挖技术(TT)的开发,选择和利用已迅速扩展。这种非凡增长的原因是希望在不影响社会和环境的情况下安装或修复地下管道系统。与传统的开挖工艺相比,非开挖技术的优势非常明显。但是,有必要通过考虑对决策任务很重要的所有标准和子标准,在项目对项目的基础上,评估任何恢复系统的适合性和适当性,无论是非开挖性还是其他方式。本文提出了一个决策支持系统的框架,该系统通过根据用户的基于知识的偏好和项目的具体情况系统地评估五组标准和子标准,来帮助建筑经理选择最适合该项目的技术。

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