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Performance-based assessment of response reduction factor of RC-elevated water tank considering soil flexibility: a case study

机译:考虑土壤柔韧性的RC提升水箱响应降低因子的基于性能的评估:一个案例研究

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The seismic design codes/standards of most countries include the nonlinear response of a structure implicitly through a response reduction/modification factor ( R ). It is the factor by which the actual base shear should be reduced to find the design base shear during design basic earthquake considering nonlinear behavior and deformation limits of structures. In the present study, attempts are made to determine the ‘ R ’ factors of four existing RC staging elevated water tanks, which are designed as per draft Indian standards for seismic design of liquid and RC designs and having a ductile detailing considering the effects of soil flexibility. The elevated RC water tanks are analyzed using displacement controlled non-linear static pushover analysis to evaluate the base shear capacity and ductility of tank considering soil flexibility. The ‘ R ’ factor is obtained for four realistic designs of elevated RC water tanks having different capacities at two performance levels. The evaluated values of ‘ R ’ factor are compared with the values suggested in the design code. The results of the study show that the flexibility of supporting soil has considerable effect on response reduction factor, period and overall performance of water tank, indicating that idealization of fixity at base may be seriously mistaken for soft soils. All the studied water tanks were designed with higher safety margin than that of specified in Indian Standards.
机译:大多数国家的抗震设计规范/标准都通过响应减少/修正因子(R)隐含了结构的非线性响应。考虑到非线性行为和结构变形极限,是在设计基本地震过程中应减少实际基础剪力的因素。在本研究中,我们尝试确定四个现有的RC分级高架水箱的“ R”因子,这些因子是按照印度关于液体和RC设计的抗震设计的标准草案进行设计的,并考虑了土壤的影响而具有延展性的细部灵活性。使用位移控制非线性静力推覆分析法对高架RC水箱进行了分析,以评估考虑到土壤挠性的水箱的基本剪切能力和延性。 “ R”因子是针对四种现实设计的高架RC水箱在两种性能水平下具有不同的容量而得出的。将“ R”因子的评估值与设计规范中建议的值进行比较。研究结果表明,支撑土的柔性对响应系数的减小,水箱的周期和整体性能有很大影响,表明基层固定性的理想化可能被严重误认为是软土。所有研究的水箱的设计安全系数均高于印度标准中规定的安全系数。

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