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Dynamically loaded concrete structures - monitoring-based assessment of the real degree of fatigue deterioration

机译:动态加载的混凝土结构-基于监控的疲劳劣化真实程度评估

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摘要

When it comes to dynamically loaded concrete structures, determining the real degree of fatigue damage of a structure on site is a very demanding process that has not been explored in depth. Calculation concepts according to current codes and specifications (e. g. fib Model Code for Concrete Structures 2010 [1]) do not offer efficient results for this task. However, the permanent monitoring from the erection of a structure up to the end of its lifetime is seen as a very promising possibility for assessing the degree of damage constantly. This article takes a closer look at the concrete fatigue concept of fib Model Code 2010 [1], shows an FE simulation of a time-dependent fatigue process for an offshore wind turbine foundation and presents a fatigue monitoring concept including laboratory tests, which enables the detection of the real degree of deterioration in a concrete structure. During tests, the use of ultrasound was identified as the most appropriate method. Measuring wave velocity enables the determination of the dynamic E-modulus, which correlates to the degree of damage within the cross-section of the structure considered.
机译:对于动态加载的混凝土结构,确定现场结构的实际疲劳破坏程度是一个非常艰巨的过程,尚未深入探讨。根据当前规范和规范的计算概念(例如,fib《混凝土结构模型规范2010》 [1])不能为该任务提供有效的结果。但是,从构筑到寿命结束的永久性监测被认为是不断评估损坏程度的极有希望的可能性。本文仔细研究了fib模型代码2010 [1]的具体疲劳概念,显示了海上风力发电机基础随时间变化的疲劳过程的有限元模拟,并提出了一种包括实验室测试在内的疲劳监测概念,从而可以实现以下目标:检测混凝土结构的实际劣化程度。在测试过程中,使用超声波被认为是最合适的方法。测量波速可以确定动态E模量,该模量与所考虑结构的横截面内的损坏程度有关。

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