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A Decision Support System for Ground Improvement Projects Using Gypsum Waste Case Study: Embankments Construction in Japan

机译:石膏废料地面改良项目决策支持系统的案例研究:日本堤防建设

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This paper introduces a multi criteria decision making model to support the decision makers who work in the ground improvement projects such as embankments construction using stabilizer materials. The use of cement as a stabilizer material in embankments construction has a long history while the application of recycled gypsum in cooperation with cement as a stabilizer material is recently introduced in Japan. Four criteria and many factors are identified to compare the two stabilizer materials, cement only or gypsum-cement mixture, for the purpose of choosing one of them. The four criteria include: saving in cost, project scope achievement, durability, and geo-environmental impacts. The proposed model, which depends on the Analytic Hierarchy Process as a multi-criteria analysis method, is developed based on cost calculations, expert knowledge for achieving scope, and laboratory test results for durability and geo-environmental properties for each stabilizer material. It is applied on a real case study for embankments construction project in Japan. Based on the results of model application on the investigated case study, a decision introduced to Japanese construction market is that using gypsum-cement mixture as a stabilizer in ground improvement projects is better than using cement only by almost 50%. This result supports the application of recycled gypsum, produced from gypsum wastes, as a stabilizer in ground improvement projects to achieve the stability of society by reducing the quantities of wastes, meet sound environment, and reduce the cost of construction. Besides, the paper discusses in details the factors and reasons which have different effects on the two stabilizer materials and control the decision making.
机译:本文介绍了一种多准则决策模型,以支持从事地面改良项目(例如使用稳定剂材料的路堤建设)的决策者。在堤防建设中使用水泥作为稳定剂材料已有很长的历史,而日本最近引入了将再生石膏与水泥配合使用作为稳定剂材料的历史。为了选择其中一种,确定了四个标准和许多因素来比较两种稳定剂材料(仅水泥或石膏-水泥混合物)。这四个标准包括:节省成本,项目范围的实现,耐用性以及对地球环境的影响。该模型基于成本计算,实现范围的专家知识以及每种稳定剂材料的耐久性和地球环境特性的实验室测试结果而开发,该模型依赖于层次分析法作为多准则分析方法。它被用于日本堤岸建设项目的实际案例研究中。根据所研究案例研究的模型应用结果,日本建筑市场的一个决定是,在地面改良项目中使用石膏-水泥混合物作为稳定剂要比仅使用水泥好50%。该结果支持了由石膏废料产生的再生石膏在地面改良项目中作为稳定剂的应用,以通过减少废料的数量,满足良好的环境并降低建筑成本来实现社会的稳定。此外,本文详细讨论了对两种稳定剂材料影响不同的因素和原因,并控制了决策。

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