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首页> 外文期刊>International Journal of Advanced Structural Engineering >Wind load analysis of tall chimneys with piled raft foundation considering the flexibility of soil
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Wind load analysis of tall chimneys with piled raft foundation considering the flexibility of soil

机译:考虑土层柔性的高桩基础烟囱风荷载分析

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Soil–structure interaction (SSI) analysis was carried out for tall reinforced concrete chimneys with piled raft foundation subjected to wind loads. To understand the significance of SSI, four types of soil were considered based on different material properties. Chimneys of different elevations and different ratios of height to base diameter of chimney were selected for the parametric study. The thickness of raft of piled raft foundation was also varied based on different ratios of outer diameter to thickness of raft. The chimneys were assumed to be located in open terrain and subjected to a maximum wind speed of 50?m/s. The along-wind and across-wind loads were computed according to IS: 4998 (Part 1)-1992 and applied along the height of the chimney. The analysis was carried out using three-dimensional finite element technique based on the direct method of SSI. The linear elastic material behaviour was assumed for the integrated chimney–foundation–soil system. The radial and tangential moments, lateral deflection and base moment of chimney were evaluated through SSI analysis and compared with the response obtained from chimney with fixed base. The base moment of chimney considerably reduces due to the effect of SSI. It is found that the variation of different responses in chimney due to the effect of SSI depends significantly on the geometrical properties of chimney and foundations. The response variation at base for a distance of 1/40th of the height of chimney should be considered for a safe design.
机译:对带有桩筏基础的高强钢筋混凝土烟囱,在风荷载作用下进行了土-结构相互作用(SSI)分析。为了理解SSI的重要性,根据不同的材料特性考虑了四种类型的土壤。选择不同高度的烟囱以及烟囱的高度与底径的不同比例的烟囱进行参数研究。桩筏基础的筏板厚度也根据外径与筏板厚度的不同比率而变化。假定烟囱位于开阔地带,最大风速为50?m / s。根据IS:4998(第1部分)-1992计算顺风向和顺风向,并将其沿烟囱高度应用。基于SSI的直接方法,使用三维有限元技术进行了分析。假定烟囱-地基-土壤一体化系统具有线性弹性材料特性。通过SSI分析评估了烟囱的径向和切向矩,横向挠度和基矩,并与固定基数的烟囱的响应进行了比较。由于SSI的作用,烟囱的基本力矩大大降低。研究发现,由于SSI的作用,烟囱中不同响应的变化很大程度上取决于烟囱和地基的几何特性。为了安全设计,应考虑烟囱高度的1/40处的基座响应变化。

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