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In situ assessment of the timber floor structure of the Skansen Lejonet fortification, Sweden

机译:瑞典Skansen Lejonet防御工事的木地板结构的现场评估

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摘要

Historical structures represent part of the cultural heritage of every nation and societies pay considerable attention to their preservation and maintenance. In historical structures, it is essential to preserve the original structure to the greatest degree possible. It is therefore of great importance to adopt structural health monitoring techniques to assess the remaining load-bearing capacity of timber structures. The main aim of this study was to examine the structural soundness and performance of the timber floor structures in Skansen Lejonet. Non-destructive testing (NDT) was used to evaluate mechanical properties and the general condition, without interfering with the structural integrity. It has been shown that the general structural condition and performance is good and fulfils the requirements for the intended use of the structure both in the past and at the present time, according to Eurocode standards. To assess the general quality of the timber, stress-wave measurements in combination with resistance drilling and X-ray measurements were applied. The quantitative evaluation of the mechanical properties and the density using stress-wave timing and radiographic measurements provided both good agreement and sufficiently good input for the structural analysis. The accurate use of non-destructive measurements, considering their crucial aspects and limitations, enables reliable results to be obtained, thereby increasing the potential to minimise interventions and prolong the service life of buildings as a part of sustainable development.
机译:历史结构是每个国家文化遗产的一部分,社会十分重视其保存和维护。在历史结构中,至关重要的是最大程度地保留原始结构。因此,采用结构健康监测技术来评估木结构的剩余承载能力非常重要。这项研究的主要目的是检查Skansen Lejonet中木地板结构的结构稳固性和性能。使用无损检测(NDT)来评估机械性能和一般状况,而不影响结构完整性。已经表明,根据欧洲规范标准,总体结构条件和性能良好,并且可以满足过去和当前结构预期用途的要求。为了评估木材的总体质量,应用了应力波测量,电阻钻孔和X射线测量。使用应力波定时和射线照相测量对机械性能和密度进行定量评估,既为结构分析提供了很好的一致性又提供了足够好的输入。考虑到无损测量的关键方面和局限性,正确使用无损测量值可以获得可靠的结果,从而增加了最大限度地减少干预措施并延长建筑物使用寿命的潜力,这是可持续发展的一部分。

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