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Dynamic response of low frequency Profiled Steel Sheet Dry Board with Concrete infill (PSSDBC) floor system under human walking load

机译:低频异形钢板干板用混凝土填充(PSSDBC)地板系统的动力响应

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摘要

This paper investigates the dynamic response of a composite structural system known as Profiled Steel Sheet Dry Board with Concrete infill (PSSDBC) to evaluate its vibration serviceability under human walking load. For this point, thirteen (13) PSSDBC panels in the category of Low Frequency Floor (LFF) were developed using Finite Element Method (FEM). The natural frequencies and mode shapes of the studied panels were determined based on the developed finite element models. For more realistic evaluation on dynamic response of the panels, dynamic load models representing human walking load were considered based on their Fundamental Natural Frequency (FNF), and also time and space descriptions. The peak accelerations of the panels were determined and compared to the limiting value proposed by the standard code ISO 2631-2. Effects of changing thickness of the Profiled Steel Sheet (PSS), Dry Board (DB), screw spacing, grade of concrete, damping ratio, type of support, and floor span on the dynamic responses of the PSSDBC panels were assessed. Results demonstrated that although some factors reduced dynamic response of the PSSDBC system under human walking load, low frequency PSSDBC floor system could reach high vibration levels resulting in lack of comfortableness for users.
机译:本文调查了称为钢板干燥板的复合结构系统的动力响应,其中具有混凝土填充(PSSDBC),以评估其在人行道负荷下的振动可用性。为此,使用有限元方法(FEM)开发了低频楼层(LFF)类别中的十三(13)个PSSDBC面板。基于开发的有限元模型确定研究的面板的自然频率和模式形状。对于对面板的动态响应进行更现实的评估,基于它们的基本自然频率(FNF)以及时间和空间描述,考虑代表人行道负荷的动态负荷模型。确定面板的峰值加速度并将其与标准码ISO 2631-2提出的限制值进行比较。评估了异形钢板(PSS),干燥板(DB),螺钉间距,混凝土,阻尼比,支撑型等级的厚度的影响,评估了PSSDBC面板动态响应的钢筋混凝土,阻尼比,支撑型和地板跨度。结果表明,虽然一些因素减少了人行道上PSSDBC系统的动态响应,但低频PSSDBC地板系统可以达到高振动水平,导致用户缺乏舒适性。

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