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Quantifying cost-effectiveness of subsurface strata exploration in excavation projects through geostatistics and spatial tessellation

机译:通过地统计和空间细分量化挖掘项目中地下地层勘探的成本效益

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A major source of uncertainty in civil engineering projects arises from the geological and geotechnical variability at the project site. This paper presents an approach to quantify such uncertainty, and to rationally incorporate them into estimates of cost contingency. Contrary to the conventional approaches that rely on individual expert's opinion or data from past projects, the proposed approach allows site-specific assessments of the intrinsic geotechnical variability through geostatistical techniques. Such uncertainty can be reduced through geotechnical investigation, and spatial tessellation techniques are proposed to facilitate determination of the optimal locations of new boreholes. Cost-effectiveness of the boreholes can be evaluated based on the corresponding reductions In geotechnical uncertainty and their influence on the budget. The approach is illustrated using a hypothetical excavation scenario, where the project costs are affected by uncertainty in the subsurface strata, particularly the rockhead level across the site. Under the specific site conditions, a Pareto frontier is developed to reveal the relationship between the number of boreholes to be drilled and potential savings in contingency budget. Through this approach, the study promotes better utilization of geotechnical information and rational assessments of project risks associated with their variability, which may lead to improved project planning and resource allocation.
机译:土木工程项目中不确定性的主要来源是项目现场的地质和岩土变化。本文提出了一种量化这种不确定性的方法,并将其合理地纳入成本偶然性的估计中。与依赖于个别专家的意见或过去项目中的数据的常规方法相反,所提出的方法允许通过地统计学方法对固有的岩土变异性进行特定位置的评估。可以通过岩土工程研究来减少这种不确定性,并且提出了空间镶嵌技术来促进确定新井眼的最佳位置。可以根据相应的岩土工程不确定性减少及其对预算的影响来评估钻孔的成本效益。假设的开挖方案说明了该方法,其中项目成本受地下地层(尤其是整个工地的岩头高度)不确定性的影响。在特定的现场条件下,开发了帕累托边界以揭示待钻的钻孔数量与应急预算潜在节省之间的关系。通过这种方法,研究促进了对岩土信息的更好利用和对与变异有关的项目风险的合理评估,这可能导致改进的项目规划和资源分配。

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