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Behaviour and Strengthening Methods of Tall Slender Columns in Earthquake Conditions

机译:地震条件中高细长柱的行为和加强方法

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Reinforced concrete buildings are normally designed and constructed with well-defined vertical column supports which are able to withstand both vertical and lateral loadings. In the case of high columns there is a risk of instability due to its slenderness caused by the higher apex ratio (measured by its height in relation to the width). This is compounded by having such buildings located at medium to high seismic risk zones, where lateral dynamic loadings can occur. This research paper focused on how such slender reinforced concrete columns will behave under earthquake loading conditions, and highlights some innovative ways to strengthen the column capacity to withstand both vertical and lateral loadings. Besides the conventional ways to provide diagonal or lateral bracings, the use of glass fibre reinforced polymer (GFRP) as an alternative material for retrofitting tall slender reinforced concrete columns are presented here. The new method includes spraying of the GFRP onto the external surfaces of the columns and also incorporate the GFRP bars as additional reinforcement into the concrete columns. Both methods proved to improve the durability and strengthen the tall reinforced concrete column. This study shows the ability of the new method of amelioration of the slender reinforced concrete columns to increase their stability during seismic activity.
机译:钢筋混凝土建筑通常设计和构造,具有明确的垂直柱支撑件,该支撑件能够承受垂直和横向载荷。在高列的情况下,由于其较高的顶点比(通过其高度与宽度的高度测量)引起的纤细,存在稳定性的风险。通过在介质到高地震风险区域的这种建筑物,这是复合的,其中可能发生横向动态负载。本研究文件集中在这种细长的钢筋混凝土柱在地震负载条件下的表现,并突出了一些创新的方法来加强柱能承受垂直和横向载荷的柱子能力。除了提供对角线或横向支护的传统方式外,这里还提供了使用玻璃纤维增​​强聚合物(GFRP)作为改装高细长钢筋混凝土柱的替代材料。新方法包括将GFRP喷射到柱的外表面上,并还将GFRP棒作为额外的加强件掺入混凝土柱中。两种方法都证明了改善耐久性和增强高钢筋混凝土柱。本研究表明了新的纤细钢筋混凝土柱改善方法的能力,以增加地震活动期间的稳定性。

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