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Strengthening Proposals for the Trigonio Tower at the City Walls of Thessaloniki

机译:加强塞萨洛尼基城墙Trigonio塔的提案

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The Trigonio tower, constructed in the 15th century for fortification reasons, is part of the city walls of the old town of Thessaloniki. The tower is a cylindrical masonry building and has been considered as part of the cultural heritage of humanity by the UNESCO World Heritage Committee. Today it presents some major damage to its load bearing system, including intense cracking, moisture damage and disintegration of mortar, bricks and stones. An extensive research study for the evaluation of the tower's bearing capacity, as well as for the suggestion of efficient strengthening interventions was held, in order to effectively prolong its expected lifetime. To this purpose, refined analytical models of 3D finite elements have been formed and used for the estimation of the elastic and inelastic tower's response to gravity and seismic loads. Results’ evaluation of several static and dynamic analyses showed that the tower's stability is not at risk under the action of gravity loads in general, but it's bearing capacity under strong seismic excitations is questionable, thus becoming obvious the necessity of strengthening interventions interventions. An invertible intervention of strengthening the tower with proper sets of external pre-stressed steel rings was also examined. Linear (elastic) analyses showed that they cannot sufficiently evaluate the effectiveness of this strengthening process. Inelastic analyses, using material laws of Drucker-Prager's type, showed that the use of prestressed steel rings can significantly reduce the plastic strains’ appearance and therefore the cracking in the masonry walls of the monument.
机译:特里贡尼奥塔(Trigonio)塔于15世纪出于防御工事而建,是塞萨洛尼基旧城区城墙的一部分。该塔是一幢圆柱砌体建筑,被联合国教科文组织世界遗产委员会视为人类文化遗产的一部分。今天,它对其承重系统造成了一些重大损害,包括严重的开裂,湿气损害和砂浆,砖石的崩解。为了有效延长塔架的预期寿命,进行了广泛的研究,以评估塔架的承载力以及建议采取有效的加固措施。为此,已经形成了精确的3D有限元分析模型,并将其用于估算弹性和非弹性塔架对重力和地震载荷的响应。结果对若干静态和动态分析的评估表明,塔架的稳定性一般不受重力载荷的影响,但在强烈地震激励下的承载能力值得怀疑,因此,显然有必要加强干预措施。还研究了采用适当的外部预应力钢环加强塔架的可逆干预措施。线性(弹性)分析表明,它们不能充分评估此加固过程的有效性。使用Drucker-Prager类型的材料定律进行的非弹性分析表明,使用预应力钢环可以显着减少塑性应变的出现,从而减少纪念碑的砌体墙体的裂缝。

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