地铁轨道工程中基础类型选择的价值工程:以印度为例

A. Vilventhan
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摘要

地铁基础系统的设计和施工需要对各种备选方案进行有效的规划和分析,以实现合适的成本效益解决方案。基础体系的选择通常是基于土壤承载力(SBC),而不考虑其他现场约束条件。这将导致在执行阶段进行昂贵的设计更改,并导致项目的严重延迟。这就要求应用先进的管理技术,在地铁项目的设计阶段选择具有成本效益的解决方案。价值工程就是这样一种面向功能的方法,用于分析产品或过程的功能,并选择以尽可能低的成本实现所有所需功能的合适解决方案。在地铁铁路项目中应用价值工程概念,可以在考虑几个标准的不同选择时,确定合适的解决方案。为此,本文将价值工程技术应用于地铁轨道工程基础类型的选择。以一个正在进行的地铁项目为例,确定了三种基础备选类型和九项重要的选择标准。采用加权评价法对地基方案进行了定量分析。结果表明,在路权有限的情况下,采用控制低强度砂浆(CLSM)地基是非常合适的。在排水量有限、SBC较少的情况下,桩基被认为是一种合适的经济有效的基础类型。
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Value engineering for the selection of a suitable type of foundation in metro rail projects: A case study from India
The design and construction of foundation systems for metro rail projects require effective planning and performing analysis over various alternatives in achieving a suitable cost-effective solution. Often the foundation system is selected based on the Soil Bearing Capacity (SBC) and other onsite constraints are left unconsidered. This results in costly design changes during the execution stages and incurs severe delays in the project. This demands the application of advanced managerial techniques to select costeffective solutions during the design stages of metro rail projects. Value Engineering is one such function-oriented approach used in analyzing the functions of a product or a process and selecting a suitable solution that achieves all the required functions at the lowest possible cost. The application of the value engineering concept in metro rail projects would enable identifying suitable solutions while considering different alternatives over several criteria. Hence, this paper applies value engineering technique for selecting the suitable foundation type for the construction of metro rail projects. A case study of an ongoing metro rail project was considered and three foundation alternative types and nine significant selection criteria were identified. The foundation alternatives were quantitatively analyzed using the weighted evaluation technique. The results indicate that for limited availability of Right of Way (ROW), the foundation with Controlled Low Strength Mortar (CLSM) is highly suitable. In scenarios of limited ROW with less SBC use of pile foundation is identified as a suitable cost-effective foundation type.
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