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Assessing the life cycle of existing maritime structures – application to a harbour bridge in Porto port

机译:评估现有海事结构的生命周期–在波尔图港的港口桥梁中的应用

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摘要

Since the construction industry is the one that bears most expenses, both in financial and environmental terms, it is of the upmost importance that these expenses originate a product with a long term exploitation, so as to mitigate them. Having this problem in consideration, in this paper the bridge located in the north of Portugal, near Porto, in the oil tanker terminal at the Leixões port was studied. This structure is located in one of the most aggressive environments for concrete structures, a maritime zone. The most accepted durability models in the country, related to deterioration induced by sea chlorides penetration, were then implemented. Thereby, it was possible to identify which model better reflects reality, since the structure in analysis is now at the end of its lifetime, after 50 years of service and shows advanced degradation due to chloride attack.In the context of this work, the structure and the test methods relevant to the theme being studied were described by inspection reports and in situ test results, made available by the Douro and Viana do Castelo Port Authority. From this data it was possible to study the structure deterioration by introducing them into durability models. These models range from prescriptive to performance based approaches, being possible to identify, from the later ones, a deterministic model, based on the Model Code 2010, a semi-probabilistic based on the E465 specification from the Portuguese National Laboratory for Civil Engineering (LNEC) and two probabilistic models, based on the same standards, for which a computer code was developed during this work. Through these deterioration prediction tools, different project scenarios were established, originating a list of minimal concrete covers to ensure 100 years of lifetime to a structure built in the studied exposure zone.
机译:由于建筑业是财务和环境方面支出最多的行业,因此最重要的是这些支出产生的产品需要长期开采,以减轻负担。考虑到这个问题,本文研究了位于葡萄牙北部,波尔图附近,莱克斯港的油轮码头中的桥梁。该结构位于混凝土结构最恶劣的环境之一,海域。然后实施了该国最受接受的耐久性模型,该模型与氯化物渗透引起的劣化有关。因此,有可能确定哪种模型更好地反映了实际情况,因为经过分析的结构现已服役50年,并且由于氯化物的侵蚀而出现了严重的退化。 Douro和Viana do Castelo港口管理局提供的检查报告和现场测试结果描述了与所研究主题相关的测试方法。根据这些数据,可以通过将其引入耐久性模型来研究结构退化。这些模型从说明性方法到基于性能的方法不等,可以从后面的方法中识别出基于模型代码2010的确定性模型,这是基于葡萄牙国家土木工程实验室(LNEC)E465规范的半概率模型)和两个基于相同标准的概率模型,并在此工作中为此开发了计算机代码。通过这些劣化预测工具,建立了不同的项目方案,从而生成了一系列最小的混凝土覆盖层,以确保在所研究的暴露区域内建造的结构的使用寿命达到100年。

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