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Seismic Performance Parameters for Reinforced Concrete-Block Shear Wall Construction

机译:钢筋混凝土砌块剪力墙结构的抗震性能参数

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The focus of the current study is to analyze previously reported test results to evaluate equivalent plastic hinge lengths for concrete-block shear walls and to extract related seismic performance parameters. Inelastic curvatures at the base of the walls are the main source of plastic deformation for flexurally dominated walls.With adequate estimation of the plastic hinge length and more realistic values for inelastic curvatures at the base of the wall, top wall displacement can be predicted more accurately. For the walls analyzed, measured compressive strains close to the base of the wall at maximum load were significantly higher than the strains specified by North American codes. The strains, although may not alter the wall strength, significantly affect the displacement ductility at maximum load. The analysis showed that the equivalent plastic hinge length varied between approximately 30 and 60% of the wall length at a drift of 1%. The product of the seismic force modification factors (for ductility and overstrength) varied between 3 and 6. The plastic hinge length and the seismic force modification factors were found to depend not only on the factors prescribed in North American codes but on the amount of vertical reinforcement and axial stress level as well. This study draws a road map for further research to facilitate better understanding and provide more realistic methods to predict the seismic performance of masonry shear wall construction.
机译:当前研究的重点是分析先前报告的测试结果,以评估混凝土砌块剪力墙的等效塑料铰链长度,并提取相关的地震性能参数。墙体底部的非弹性曲率是挠曲支配墙塑性变形的主要来源。通过适当估算塑料铰链的长度以及墙体底部的非弹性曲率的更实际值,可以更准确地预测顶壁位移。对于分析的墙体,在最大载荷下,靠近墙体底部测得的压缩应变显着高于北美规范指定的应变。尽管应变可能不会改变壁的强度,但会在最大负载下显着影响位移延展性。分析表明,等效塑料铰链长度在壁长的30%至60%之间变化,漂移为1%。地震力修正系数(延性和超强度)的乘积在3到6之间变化。塑料铰链长度和地震力修正系数不仅取决于北美规范中规定的系数,还取决于垂直方向的量。钢筋和轴向应力水平。这项研究为进一步研究绘制了路线图,以促进更好的理解并提供更现实的方法来预测砌体剪力墙施工的抗震性能。

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