底土模型不确定性的量化与验证

IF 0.5 Q4 ENGINEERING, GEOLOGICAL Geotechnik Pub Date : 2024-11-12 DOI:10.1002/gete.202400011
Andreas Wiegel, Dr.-Ing. Andrés Peña-Olarte, Prof. Dr.-Ing. Roberto Cudmani
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引用次数: 0

摘要

在基础设施规划和建设中,对底土及其相关不确定性进行建模是岩土工程师的一项基本任务。然而,用于量化和显示底土模型不确定性的概率方法和工具在实践中很少使用,而确定性插值占主导地位。在使用建筑信息模型(BIM)的数字规划中,概率方法支持创建一个学科模型,其中空间层结构的不确定性被统计量化,以评估土木建筑设计和执行中的地质风险。本文介绍了一个案例研究,使用顺序高斯模拟(SGSIM)和顺序指标模拟(siisim)的组合来解释土层几何结构中的不确定性。在慕尼黑市政厅的一个案例研究中,应用了地质统计学方法,并根据70个钻孔测井曲线进行了验证,从而对特定层的发生概率进行了空间量化。案例研究表明,与基于插值程序的传统确定性方法相比,该方法具有巨大的潜力和优势。
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Quantification and validation of uncertainties in subsoil models

In infrastructure planning and construction, modeling the subsoil and its associated uncertainty is a fundamental task of geotechnical engineers. However, probabilistic methods and tools for quantifying and displaying the uncertainty of the subsoil models are rarely used in practice where deterministic interpolation dominates. In digital planning using Building Information Modeling (BIM), the probabilistic approach supports creating a discipline model in which the uncertainties of the spatial layer structure are statistically quantified to evaluate the georisks in the design and execution of civil constructions. This article presents a case study using a combination of Sequential Gaussian Simulation (SGSIM) and Sequential Indicator Simulation (SISIM) to account for uncertainties in soil layer geometry. In a case study at the Munich Town Hall, a geostatistical approach is applied and validated based on 70 bore logs, whereby the probabilities for the occurrence of a particular layer are spatially quantified. The case study illustrates the methodology‘s great potential and benefits compared to the conventional deterministic approach based on interpolation procedures.

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来源期刊
Geotechnik
Geotechnik ENGINEERING, GEOLOGICAL-
CiteScore
1.20
自引率
33.30%
发文量
36
期刊介绍: Die Zeitschrift "geotechnik" ist das Organ der Deutschen Gesellschaft für Geotechnik e.V (DGGT) und erscheint viermal jährlich. Die Themen- schwerpunkte entsprechen den Fachsektionen der DGGT und umfassen Bodenmechanik, Erd- und Grundbau, Felsmechanik, Ingenieurgeologie, Geokunststoffe sowie Umweltgeotechnik. Die Schwerpunkte einer Ausgabe werden jeweils von einer Fachsektion gestellt und auch um Beiträge aus anderen Themenbereichen ergänzt. Mitteilungen der DGGT, CBTR-Nachrichten des Centrums für Deutsches und Internationales Baugrund- und Tiefbaurecht e.V., Nachrichten aus der Industrie.
期刊最新文献
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