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EPR Flamanville 3: A technical showcase for innovation in the EDF Group

机译:EPR Flamanville EEP 3:EDF集团创新技术展示

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EDF is progressing steadily on the quality of structural health monitoring by taking advantage of the latest innovations in sensors. The construction of the Flamanville 3 EPR enabled to highlight significant advances in temperature, strain and moisture monitoring in concrete of the inner prestressed containment. A distributed measurement system with fiber optics embedded in concrete has been installed. Temperature and strain data is measured on a containment circumference. The challenge of holding the fragile concreting sensitive elements (silica) established over long lengths and in a dense reinforcement was successful. A remote optoelectronic device provides a measurement every meter all over the structure. First effects of concrete prestressing have been quantified. Another system for measuring the water content by Time Domain Reflectrometry was also setup. This allows to estimate the permittivity of the medium depending on the water content of the concrete. Five sensors were embedded at different depths to estimate the gradient of moisture in the wall. This information is one of the parameters that will predict more accurately the ageing of concrete. Effective cooperation from the lab to the field was required to transfer these technologies, while ensuring performance in long term operation.
机译:通过利用传感器的最新创新技术,EDF在结构健康监测的质量方面正在稳步发展。 Flamanville 3 EPR的结构突出了内部预应力安全壳混凝土中温度,应变和湿度监测的显着进步。已安装了将光纤嵌入混凝土的分布式测量系统。温度和应变数据是在安全壳圆周上测量的。成功地解决了将脆弱的混凝土敏感元素(二氧化硅)保持在很长的长度和密集的钢筋中的挑战。远程光电设备可在整个结构的每米上进行测量。混凝土预应力的第一效应已被量化。还建立了另一个通过时域反射仪测量水含量的系统。这允许根据混凝土的水含量来估计介质的介电常数。在不同深度处嵌入了五个传感器,以估计墙内水分的梯度。该信息是将更准确地预测混凝土老化的参数之一。在确保长期运行性能的同时,需要从实验室到现场的有效合作来转移这些技术。

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