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The nonlinear analysis of an innovative slit reinforced concrete water tower in seismic regions

机译:地震区域新型缝钢筋混凝土水塔的非线性分析。

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摘要

Water towers are widely used in our society as one of water distribution facilities within water network systems. In the event of a severe earthquake, however, a single plastic hinge that occurs in a water tower could cause its total collapse before nonlinear resources of the rest of the tower remains fully utilised. This research presents an innovative technique for the assembly of a water tower using the slits in its reinforced concrete shaft for the purpose of mitigating the seismic response. Slit shafts were designed to have four slits at 90 degree intervals along the full height of the shafts. The shaft parts were connected to each other at the bottom, top and every five meters with coupling beams. The slit width was used as a variable in this study which varied between 50 mm and 2000 mm. The nonlinear seismic performance of the proposed slit towers was analysed by means of a finite element approach with respect to soil types defined in Eurocode 8 and seismic behaviour were compared to the solid water tower. A detailed observation of the compression and tension stress distributions with respect to the slit width was performed.\udThe obtained analytical results revealed that slit width in the reinforced concrete tower affect the failure mode and stiffness of a water tower significantly. With an appropriate design, the conversion of a solid water tower into a slit tower can significantly increase its ductility under seismic action without significantly compromising its bearing capacity. The results showed that contours of tension and compression stress intensity in shafts, which could lead to a failure of water towers, highly depended on the slit width. In the solid water tower, the stress concentration dominated at the base of the shaft, however in the narrow slit water towers the stresses were equally distributed along the height of the shafts. Also, the stresses were mostly concentrated at the top of the shafts in the wide slit water towers. Conclusively, the results provided useful information regarding the compression stress distribution along the slit shafts in the water towers which can be used in obtaining an optimum slit shaft design for different soil types.
机译:水塔在我们的社会中被广泛用作水网络系统中的水分配设施之一。但是,在发生严重地震的情况下,在水塔中发生的单个塑料铰链可能会导致其完全坍塌,而水塔其余部分的非线性资源仍未得到充分利用。这项研究提出了一种创新技术,该技术可使用钢筋混凝土竖井中的缝隙来装配水塔,以减轻地震响应。狭缝轴设计为沿轴的整个高度以90度间隔具有四个狭缝。轴的各个部分在底部,顶部和每五米通过连接梁相互连接。在这项研究中,狭缝宽度用作变量,范围在50毫米至2000毫米之间。针对欧洲规范8中定义的土壤类型,通过有限元方法分析了拟建缝隙塔的非线性抗震性能,并将其与固体水塔的抗震性能进行了比较。对压缩应力和拉伸应力相对于缝隙宽度的分布进行了详细的观察。\ ud获得的分析结果表明,钢筋混凝土塔中的缝隙宽度对水塔的破坏模式和刚度有显着影响。通过适当的设计,将固态水塔转换为狭缝塔可以在地震作用下显着提高其延性,而不会显着影响其承载能力。结果表明,竖井中拉伸应力和压缩应力强度的轮廓高度取决于缝隙宽度,这可能导致水塔发生故障。在固体水塔中,应力集中在竖井的底部,但是在狭窄的狭缝水塔中,应力沿竖井的高度均匀分布。同样,应力主要集中在宽缝水塔的竖井顶部。结论是,结果提供了有关沿水塔中缝隙轴的压缩应力分布的有用信息,这些信息可用于获得针对不同土壤类型的最佳缝隙轴设计。

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