非均匀土表面圆形基础竖向振动的集总参数模型

IF 1.4 Q2 ENGINEERING, MULTIDISCIPLINARY
Amina Zahafi, M. Hadid, R. Bencharif
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引用次数: 0

摘要

目的研究一种新的频率无关集总参数模型(LPM)。这种新模型的直接结果确保了高效率和基础垂直振动的直接计算。考虑了在垂直时谐激励作用下,非均匀半空间上的刚性圆形基础。设计/方法/方法一个简单的模型表示地基系统由一个单自由度(SDOF)系统组成,该系统包含一个与频率无关的弹簧和阻尼器相连的集中质量。此外,在SDOF系统中加入了一个虚拟质量。采用了几种数值方法和数学技术来确定每个SDOF的参数:(1)计算静力和动力基础阻抗函数的垂直分量。采用边界元法和薄层法相结合的公式求解了该动态相互作用问题,该公式允许模拟任何复杂的非均匀半空间构型。然后,确定了非均匀半空间上的圆形基础的静刚度表达式。(2)在共振频率处计算系统参数(阻尼系数和虚质量);(3)利用曲线拟合技术,建立了与频率无关的阻尼系数和附加虚质量的一般公式。与其他严格公式的结果进行了比较,以验证所开发模型的准确性;这些都是可以解决的更普遍问题的例外情况(如任意形状的浅或嵌入式基础,其他振动模式等问题)。在这个新的LPM中,将不再需要阻抗功能。工程师只需要有限数量的输入参数(基础和土壤的几何和力学特性)。此外,需要一个简单的计算器(即我们不需要任何复杂的软件)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lumped parameter model for vertical vibrations of surface circular foundations on nonhomogeneous soil
Purpose A newly developed frequency-independent lumped parameter model (LPM) is the purpose of the present paper. This new model’s direct outcome ensures high efficiency and a straightforward calculation of foundations’ vertical vibrations. A rigid circular foundation shape resting on a nonhomogeneous half-space subjected to a vertical time-harmonic excitation is considered. Design/methodology/approach A simple model representing the soil–foundation system consists of a single degree of freedom (SDOF) system incorporating a lumped mass linked to a frequency-independent spring and dashpot. Besides that, an additional fictitious mass is incorporated into the SDOF system. Several numerical methods and mathematical techniques are used to identify each SDOF’s parameter: (1) the vertical component of the static and dynamic foundation impedance function is calculated. This dynamic interaction problem is solved by using a formulation combining the boundary element method and the thin layer method, which allows the simulation of any complex nonhomogeneous half-space configuration. After, one determines the static stiffness’s expression of the circular foundation resting on a nonhomogeneous half-space. (2) The system’s parameters (dashpot coefficient and fictitious mass) are calculated at the resonance frequency; and (3) using a curve fitting technique, the general formulas of the frequency-independent dashpot coefficients and additional fictitious mass are established. Findings Comparisons with other results from a rigorous formulation were made to verify the developed model’s accuracy; these are exceptional cases of the more general problems that can be addressed (problems like shallow or embedded foundations of arbitrary shape, other vibration modes, etc.). Originality/value In this new LPM, the impedance functions will no longer be needed. The engineer only needs a limited number of input parameters (geometrical and mechanical characteristics of the foundation and the soil). Moreover, a simple calculator is required (i.e. we do not need any sophisticated software).
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来源期刊
World Journal of Engineering
World Journal of Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
4.20
自引率
10.50%
发文量
78
期刊介绍: The main focus of the World Journal of Engineering (WJE) is on, but not limited to; Civil Engineering, Material and Mechanical Engineering, Electrical and Electronic Engineering, Geotechnical and Mining Engineering, Nanoengineering and Nanoscience The journal bridges the gap between materials science and materials engineering, and between nano-engineering and nano-science. A distinguished editorial board assists the Editor-in-Chief, Professor Sun. All papers undergo a double-blind peer review process. For a full list of the journal''s esteemed review board, please see below.
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