In establishing the reliability of performance-related design methods for concrete – which are relevant for resistance against chloride-induced corrosion - long-term experience of local materials and practices and detailed knowledge of the ambient and local micro-climate are critical. Furthermore, in the development of analytical models for performance-based design, calibration against test data representative of actual conditions in practice is required. To this end, the current study presents results from full-scale, concrete pier-stems under long-term exposure to a marine environment with work focussing on XS2 (below mid-tide level) in which the concrete is regarded as fully saturated and XS3 (tidal, splash and spray) in which the concrete is in an unsaturated condition. These exposures represent zones where concrete structures are most susceptible to ionic ingress and deterioration. Chloride profiles and chloride transport behaviour are studied using both an empirical model (erfc function) and a physical model (ClinConc). The time dependency of surface chloride concentration (Cs) and apparent diffusivity (Da) were established for the empirical model whereas, in the ClinConc model (originally based on saturated concrete), two new environmental factors were introduced for the XS3 environmental exposure zone. Although the XS3 is considered as one environmental exposure zone according to BS EN 206-1:2013, the work has highlighted that even within this zone, significant changes in chloride ingress are evident. This study aims to update the parameters of both models for predicting the long term transport behaviour of concrete subjected to environmental exposure classes XS2 and XS3.
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机译:在确定与性能相关的混凝土设计方法的可靠性(与耐氯化物腐蚀有关)时,当地材料和实践的长期经验以及对周围环境和局部微气候的详细了解至关重要。此外,在基于性能设计的分析模型的开发中,需要根据代表实际条件的测试数据进行校准。为此,本研究提出了长期暴露在海洋环境中的全尺寸混凝土墩柱的结果,其工作重点是XS2(低于潮汐水平),其中混凝土被视为完全饱和,而XS3 (潮汐,飞溅和喷射)混凝土处于不饱和状态。这些暴露代表了混凝土结构最容易受到离子侵入和破坏的区域。使用经验模型(erfc函数)和物理模型(ClinConc)研究了氯化物的分布和氯化物的传输行为。建立了经验模型的表面氯化物浓度(Cs)和表观扩散率(Da)的时间依赖性,而在ClinConc模型(最初基于饱和混凝土)中,为XS3环境暴露区域引入了两个新的环境因素。尽管根据BS EN 206-1:2013,XS3被认为是一个环境暴露区域,但研究工作强调,即使在该区域内,氯化物进入的明显变化也很明显。这项研究旨在更新这两个模型的参数,以预测遭受环境暴露等级XS2和XS3的混凝土的长期运输行为。
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