An approach to risk of rockfalls on roads. Case study of the Rafael Caldera Highway

IF 4.9 2区 工程技术 Q1 ENGINEERING, CIVIL
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引用次数: 0

Abstract

In recent times, significant advancements have been made in the development of road safety, making it a key focus for Highway Engineers. To ensure the safety of road users, various methodologies have been established for assessing vulnerability, threat, and risk in both road infrastructure and vehicles. This article proposes an evaluation of the risk associated with rockfall on roads, incorporating the analysis of geotechnical and road parameters, verification of risk and vulnerability criteria, statistical analysis of vehicle vulnerability, and the assessment of kinematic slope stability. Additionally, the classification of rock masses in terms of threat is considered, leading to the development of a novel methodology for risk assessment. The evaluation of threat, vulnerability, and risk utilizes conventional methods such as assessing rock mass quality, kinematic stability analysis, and statistical parameters. This methodology has been implemented on the Mérida-El Vigía Highway, giving results consistent with those observed on the ground, unlike the others implemented in the area.

道路落石风险方法。拉斐尔-卡尔德拉公路案例研究
近来,道路安全发展取得了长足进步,成为公路工程师关注的重点。为了确保道路使用者的安全,已经建立了各种方法来评估道路基础设施和车辆的脆弱性、威胁和风险。本文提出了与道路落石相关的风险评估方法,包括岩土工程和道路参数分析、风险和脆弱性标准验证、车辆脆弱性统计分析以及运动斜坡稳定性评估。此外,还考虑了根据威胁程度对岩体进行分类,从而开发出一种新的风险评估方法。对威胁、脆弱性和风险的评估采用了常规方法,如岩体质量评估、运动稳定性分析和统计参数。该方法已在梅里达-埃尔维吉亚公路上实施,得出的结果与实地观察到的结果一致,与该地区实施的其他方法不同。
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来源期刊
Transportation Geotechnics
Transportation Geotechnics Social Sciences-Transportation
CiteScore
8.10
自引率
11.30%
发文量
194
审稿时长
51 days
期刊介绍: Transportation Geotechnics is a journal dedicated to publishing high-quality, theoretical, and applied papers that cover all facets of geotechnics for transportation infrastructure such as roads, highways, railways, underground railways, airfields, and waterways. The journal places a special emphasis on case studies that present original work relevant to the sustainable construction of transportation infrastructure. The scope of topics it addresses includes the geotechnical properties of geomaterials for sustainable and rational design and construction, the behavior of compacted and stabilized geomaterials, the use of geosynthetics and reinforcement in constructed layers and interlayers, ground improvement and slope stability for transportation infrastructures, compaction technology and management, maintenance technology, the impact of climate, embankments for highways and high-speed trains, transition zones, dredging, underwater geotechnics for infrastructure purposes, and the modeling of multi-layered structures and supporting ground under dynamic and repeated loads.
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