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Dynamic soil-structure interaction studies on 275m tall industrial chimney with openings

机译:275m高的带开口工业烟囱的动态土-结构相互作用研究

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In this paper, a three dimensional soil-structure interaction (SSI) is numerically simulated using finite element method in order to analyse the foundation moments in annular raft of tall slender chimney structures incorporating the effect of openings in the structure and the effect of soil flexibility, when the structure-soil system is subjected to El Centro (1940) ground motion in time domain. The transient dynamic analysis is carried out using LS-DYNA software. The linear ground response analysis program ProShake has been adopted for obtaining the ground level excitation for different soil conditions, given the rock level excitation. The radial and tangential bending moments of annular raft foundation obtained from this SSI analysis have been compared with those obtained from conventional method according to the Indian standard code of practice, IS 11089:1984. It is observed that tangential and radial moments increase with the increase in flexibility of soil. The analysis results show that the natural frequency of chimney decreases with increase in supporting soil flexibility. Structural responses increase when the openings in the structure are also considered. The purpose of this paper is to propose the need for an accurate evaluation of the soil-structure interaction forces which govern the structural response.
机译:本文利用有限元方法对三维土-结构相互作用(SSI)进行了数值模拟,以分析细长细长烟囱结构的环形筏中的基础弯矩,同时考虑了结构中的开口效应和土壤柔性的影响,当结构-土壤系统在时域中经受El Centro(1940)地面运动时。瞬态动态分析是使用LS-DYNA软件进行的。在给出岩石水平激励的情况下,采用线性地面响应分析程序ProShake来获得不同土壤条件下的地面水平激励。根据印度标准操作规范IS 11089:1984,将通过此SSI分析获得的环形筏基础的径向和切向弯矩与通过常规方法获得的径向和切向弯矩进行了比较。可以看出,切向和径向矩随着土壤柔性的增加而增加。分析结果表明,烟囱的固有频率随着支持土壤柔性的增加而降低。当还考虑结构中的开口时,结构响应会增加。本文的目的是提出需要精确评估控制结构响应的土壤-结构相互作用力的需求。

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