H2020Индивидуална стипендия2019–2021

BriFace · Novel assessment of bridge retrofitting measures through Interface Efficiency Indices (InterFeis) using a Guided Wave-based monitoring method

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2019-06-01 → 2021-05-31
Финансиране от ЕС
212 934 €
Участници
1
Схема
MSCA-IF-EF-ST

Линиите свързват координатора с партньорите.

Накратко на български

Мостовете и методите за тяхното укрепване се анализират чрез мониторинг с насочени вълни, за да се подобри свързаността на новите материали. Това помага за повишаване на безопасността на пътуващите и намаляване на разходите за ремонт на остарелите съоръжения в Европа.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Novel assessment of bridge retrofitting measures through Interface Efficiency Indices (InterFeis) using a Guided Wave-based monitoring method

Problem issued: With approximately two million highway and railway bridges, of which almost 10% are characterised as structurally deficient and 14% as functionally obsolete, there is a huge challenge for assessing, repairing and strengthening bridges in Europe and worldwide. Indicatively, the average bridge is 43 years old and almost half a trillion trips are taken on a daily basis across structurally deficient bridges, on which world economies and travellers safety heavily rely upon Thus, ageing bridges require urgently strengthening and efficient monitoring, to avoid incidents like the very recent failure of the bridge in Italy. Notably, deck deficiencies are not necessarily the result of deterioration and strength degradation, e.g. corrosion and/or cumulative fatigue effects, but might be related to increases in traffic volumes and loads, e.g. permissible axle weights, or increases in code requirements. Hence the widening and strengthening of bridges are among the most pressing needs for enhancing mobility in EU networks, and this is the main motivation of this Fellowship for pursuing an integrated framework for the efficient and sufficient strengthening of bridges and their monitoring on the basis of long-distant inspection using guided waves (GW), examining and improving the interface response to achieve full embedment. Importance to society: It is accepted that bridgeworks within Europe have a total value of around €50bn and a moderate 2% increase in their load capacity or life would result in savings of the order of €1bn. Notwithstanding the number of EU bridges that need retrofitting, there is a lack of integrated legislation frameworks and code provisions within the EU and worldwide, whilst the new Eurocode 8-3 is expected to cover only the seismic retrofit of bridges, yet is it not expected to provide guidance on the urgent need for the enhancement of the capacity of existing bridge decks against increased traffic loads. Also, in engineering and monetary terms, there is an urgent need for efficient asset management and plan a strategy based on performance, monitoring and resilient data. Objectives Obj. 1 To define the Interface Efficiency Indices (InterFeis). The indices will be correlated to the stiffness of the strengthened structural element and the properties of the interface using spectral elements. These InterFeis will be defined for the most critical bridge decks with deficiencies, for a reasonable number of representative types of decks (e.g. voided slab decks, precast beams, box girder). Obj. 2 To utilize an expedient, long-distant inspection method of GW for the first time in bridge inspection in order to detect, map and characterize the potential discontinuities within the interfaces. To achieve this, the spectral approach will assist in examining different zones and damages within the bridge deck, defining the range of values of InterFeis taking into consideration the bridge performance and exposure conditions. Obj. 3 To increase the interface efficiency using novel adhesive bond layers containing nanoparticles towards the development of advanced strengthening systems for bridges. The improved efficiency will be measured with InterFeiS, both numerically and experimentally. Obj. 4 To use IntereFeiS as a reliable tool towards the quantification of the redundancy of the retrofitted bridge. The crucial loss of stiffness/capacity of existing bridge decks locally in critical cross sections will be matched with IntereFeis which will be ready to use for rapid decisions of further time-efficient intervention on the bridge

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Modernisation of our deficient transportation networks and in particular bridges is a pressing requirement imposed by the growing EU economy, vital to societal coherence and safety. Frequent retrofitting solutions include the use of versatile Fiber Reinforced Polymers systems (FRPs), which have been proven to enhance the capacity and deflections of bridges. Nevertheless, it is surprising that only a few, if any, research results are available with regard to the efficiency and appropriateness of FRP systems used on bridge retrofitting schemes, whilst international design guidelines neglect the level of integration of the measures with the existing bridge components. In practice, and especially in bridge decks were deterioration is expected, there is a number of limitations that reduce the level of integration of the FRP system with the bridge. This gave the BriFace project a strong motivation to utilise Structural Health Monitoring (SHM) techniques to assess the efficiency of the strengthening measure and quantify those, for the first time in the international literature, with the Interface Efficiency Indices (InterFeis), by measuring reliably the interface deflections and strains and by taking into account the failure modes and the limit stress states of bridge components. The novel objectives of BriFace are: 1) To define the Interface Efficiency Indices, 2) To utilize an expedient, long-distant inspection method of guided waves for the first time in bridge inspection, 3) To increase the interface efficiency by chemical means potentially by using nanoparticles and 4) To use InterFeis as a reliable indicator toward the quantification of the redundancy of the retrofitted bridge, as a means to assess its capacity and thus its resilience. The research outcomes will also benefit stakeholders and fuel bridge design guidelines and align them with the EU strategy on infrastructural safety and resilience.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз