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Seismic fragility curves using pulse-like and spectrally equivalent ground-motion records 地震易损性曲线使用脉冲和频谱等效的地面运动记录
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-08-01 DOI: 10.12989/EAS.2020.19.2.079
M. Surana
4- and 8-storey reinforced-concrete frame buildings are analyzed under the suites of the near-fault pulse-like, and the corresponding spectrally equivalent far-fault ground-motion records. Seismic fragility curves for the slight, moderate, extensive, and complete damage states are developed, and the damage probability matrices, and the mean loss ratios corresponding to the Design Basis Earthquake and the Maximum Considered Earthquake hazard levels are compared, for the investigated buildings and sets of ground-motion records. It is observed that the spectrally equivalent far-fault ground-motion records result in comparable estimates of the fragility curve parameters, as that of the near-fault pulse-like ground-motion records. As a result, the derived damage probability matrices and mean loss ratios using two suites of ground-motion records differ only marginally (of the order of ~10%) for the investigated levels of seismic hazard, thus, implying the potential for application of the spectrally equivalent ground-motion records, for seismic fragility and risk assessment at the near-fault sites.
分析了4层和8层钢筋混凝土框架建筑在近断层脉动和相应的远断层等效地震动记录组下的地震活动。建立了建筑在轻微、中等、广泛和完全损伤状态下的地震易损性曲线,比较了建筑在设计基础地震和最大考虑地震危险等级下的损伤概率矩阵和平均损失率。观察到,谱等效的远断层地震动记录与近断层脉状地震动记录的脆性曲线参数估计值相当。因此,使用两组地震动记录得出的损伤概率矩阵和平均损失率对于所调查的地震危险级别只有微小的差异(约为10%),因此,这意味着将频谱等效地震动记录应用于近断层地点的地震易损性和风险评估的潜力。
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引用次数: 0
Foundation size effect on the efficiency of seismic base isolation using a layer of stone pebbles 地基尺寸对石卵石隔震效果的影响
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-08-01 DOI: 10.12989/EAS.2020.19.2.103
I. Banović, J. Radnić, N. Grgić
The effect of the foundation size on the efficiency of seismic base isolation using a layer of stone pebbles is experimentally investigated. Four scaled models of buildings with different stiffnesses (from very stiff to soft) were tested, each with the so-called small and large foundation, and exposed to four different accelerograms (different predominant periods and durations). Tests were conducted so that the strains in the model remained elastic and afterwards the models were tested until collapse. Each model was tested for the case of the foundation being supported on a rigid base and on an aseismic layer. Compared to the smaller foundation, the larger foundation results in a reduced rocking effect, higher earthquake forces and lower bearing capacity of the tested models, with respectable efficiency (reduced strain/stress, displacement and increase of the ultimate bearing capacity of the model) for the considered seismic base isolation compared to the foundation on a rigid base.
试验研究了基础尺寸对采用卵石层隔震基础效率的影响。测试了四个具有不同刚度(从非常刚到柔软)的建筑比例模型,每个模型都有所谓的小型和大型基础,并暴露在四个不同的加速度图(不同的主周期和持续时间)下。进行测试,使模型中的应变保持弹性,然后对模型进行测试,直到崩溃。每个模型都针对刚性基础和抗震层支撑的情况进行了测试。与较小的基础相比,较大的基础可减少摇摆效应,提高地震力,降低测试模型的承载力,与刚性基础相比,考虑的地震基础隔震具有可观的效率(降低应变/应力、位移和提高模型的极限承载力)。
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引用次数: 8
Structural health monitoring of seismically vulnerable RC frames under lateral cyclic loading 横向循环荷载作用下地震易损性钢筋混凝土框架结构健康监测
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-07-01 DOI: 10.12989/EAS.2020.19.1.29
C. Chalioris, M. E. Voutetaki, A. Liolios
The effectiveness and the sensitivity of a Wireless impedance/Admittance Monitoring System (WiAMS) for the prompt damage diagnosis of two single-storey single-span Reinforced Concrete (RC) frames under cyclic loading is experimentally investigated. The geometrical and the reinforcement characteristics of the RC structural members of the frames represent typical old RC frame structure without consideration of seismic design criteria. The columns of the frames are vulnerable to shear failure under lateral load due to their low height-to-depth ratio and insufficient transverse reinforcement. The proposed Structural Health Monitoring (SHM) system comprises of specially manufactured autonomous portable devices that acquire the in-situ voltage frequency responses of a network of twenty piezoelectric transducers mounted to the RC frames. Measurements of external and internal small-sized piezoelectric patches are utilized for damage localization and assessment at various and increased damage levels as the magnitude of the imposed lateral cycle deformations increases. A bare RC frame and a strengthened one using a pair of steel crossed tension-ties (X-bracing) have been tested in order to check the sensitivity of the developed WiAMS in different structural conditions since crack propagation, damage locations and failure mode of the examined frames vary. Indeed, the imposed loading caused brittle shear failure to the column of the bare frame and the formation of plastic hinges at the beam ends of the X-braced frame. Test results highlighted the ability of the proposed SHM to identify incipient damages due to concrete cracking and steel yielding since promising early indication of the forthcoming critical failures before any visible sign has been obtained.
试验研究了无线阻抗/导纳监测系统(WiAMS)对两层单层单跨钢筋混凝土框架在循环荷载作用下的快速损伤诊断的有效性和灵敏度。框架的钢筋混凝土结构构件的几何和配筋特性代表了典型的未考虑抗震设计准则的旧钢筋混凝土框架结构。框架柱高深比低,横向配筋不足,在横向荷载作用下易发生剪切破坏。提出的结构健康监测(SHM)系统由专门制造的自主便携式设备组成,该设备可获取安装在RC框架上的20个压电传感器网络的现场电压频率响应。外部和内部小尺寸压电片的测量用于损伤定位和评估在不同的和增加的损伤水平,随着施加的横向循环变形的幅度增加。由于被测框架的裂纹扩展、损伤位置和破坏模式不同,为了检查所开发的WiAMS在不同结构条件下的灵敏度,对一个裸RC框架和一个使用一对钢交叉张拉系(x支撑)的加固框架进行了测试。事实上,施加的荷载导致裸框架柱的脆性剪切破坏和x支撑框架梁端塑性铰的形成。测试结果强调了所提出的SHM能够识别由混凝土开裂和钢屈服引起的早期损害,因为在获得任何可见迹象之前,有希望对即将到来的关键失效进行早期指示。
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引用次数: 29
Dynamic interaction effects of buried structures on seismic response of surface structures 地下结构动力相互作用对地表结构地震反应的影响
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-07-01 DOI: 10.12989/EAS.2020.19.1.001
Rafet Sisman, Y. Ayvaz
This study presents an investigation of the dynamic interactions between a surface structure lying on two different soil deposits and a square-shaped buried structure embedded in the soil. To this end, a large number of numerical models are generated by using a well-known Finite Element Method software, i.e., OpenSEES. The interaction phenomenon is assumed to be affected by six different parameters. In the parametric study, these parameters are assumed to have various values in accordance with the engineering practices. A total of 1620 possible combinations of the parameter values are addressed in this study. 30 different numerical models are also generated as the 'free-field cases' to set a reference. The surface structure drift and acceleration amplifications are used as a measure to evaluate the dynamic interactions. The response (i.e., drifts and accelerations) amplifications are calculated as the ratio of the maximum surface structure response in any 'case' to the maximum surface structure response in corresponding free-field case. Variation of the response amplifications with any of the investigated parameters is addressed in this paper. The results obtained from the numerical analyses clearly reveal that the presence of a buried structure in the vicinity of a surface structure can cause both amplification and de-amplification of the surface structure responses, depending on the case parameters.
本研究提出了一项动态相互作用的调查,表面结构躺在两个不同的土壤沉积物和一个方形的埋藏结构嵌入土壤。为此,使用著名的有限元软件OpenSEES生成了大量的数值模型。假设相互作用现象受到六个不同参数的影响。在参数化研究中,根据工程实际假设这些参数有不同的取值。在本研究中,共有1620种可能的参数值组合。还生成了30种不同的数值模型作为“自由场情况”,作为参考。采用表面结构漂移和加速度放大作为评价动力相互作用的指标。响应(即漂移和加速度)放大计算为任意情况下最大表面结构响应与相应自由场情况下最大表面结构响应之比。本文讨论了响应放大随所研究参数的变化。数值分析结果清楚地表明,在表面结构附近存在埋地结构,会引起表面结构响应的放大和去放大,这取决于情况参数。
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引用次数: 1
Estimation of elastic seismic demands in TU structures using interactive relations between shear and torsion 利用剪切和扭转相互作用关系估计TU结构的弹性地震需求
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-07-01 DOI: 10.12989/EAS.2020.19.1.59
Ruth A. Abegaz, Han‐Seon Lee
The code static eccentricity model for elastic torsional design of structures has two critical shortcomings: (1) the negation of the inertial torsional moment at the center of mass (CM), particularly for torsionally-unbalanced (TU) building structures, and (2) the confusion caused by the discrepancy in the definition of the design eccentricity in codes and the resistance eccentricity commonly used by engineers such as in FEMA454. To overcome these shortcomings, using the resistance eccentricity model that can accommodate the inertial torsional moment at the CM, interactive relations between shear and torsion are proposed as follows: (1) elastic responses of structures at instants of peak edge-frame drifts are given as functions of resistance eccentricity, and (2) elastic hysteretic relationships between shear and torsion in forces and deformations are bounded by ellipsoids constructed using two adjacent dominant modes. Comparison of demands estimated using these two interactive relations with those from shake-table tests of two TU building structures (a 1:5-scale five-story reinforced concrete (RC) building model and a 1:12-scale 17-story RC building model) under the service level earthquake (SLE) show that these relations match experimental results of models reasonably well. Concepts proposed in this study enable engineers to not only visualize the overall picture of torsional behavior including the relationship between shear and torsion with the range of forces and deformations, but also pinpoint easily the information about critical responses of structures such as the maximum edge-frame drifts and the corresponding shear force and torsion moment with the eccentricity.
用于结构弹性扭转设计的规范静态偏心模型存在两个关键缺陷:(1)否定质心惯性力矩(CM),特别是对于扭转不平衡(TU)的建筑结构;(2)由于规范中设计偏心的定义与工程师常用的阻力偏心(如FEMA454)的定义不一致而造成混淆。为了克服这些缺点,利用可容纳CM处惯性扭转矩的阻力偏心率模型,提出了剪力与扭转的相互作用关系:(1)将结构在峰值边框漂移时刻的弹性响应作为阻力偏心率的函数;(2)剪力与扭转在力和变形中的弹性滞回关系由两个相邻主导模态构造的椭球体限定。将这两种相互作用关系估算的需求与两种TU建筑结构(1:5比例的五层钢筋混凝土(RC)建筑模型和1:12比例的17层钢筋混凝土(RC)建筑模型)在服务级地震(SLE)下的振动台试验结果进行了比较,结果表明,这两种相互作用关系与模型试验结果吻合较好。本研究中提出的概念使工程师不仅能够可视化扭转行为的总体情况,包括剪切和扭转与力和变形范围之间的关系,而且还可以轻松地确定结构的关键响应信息,例如最大边缘框架漂移和相应的剪切力和扭转力矩与偏心。
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引用次数: 0
Suspended Columns for Seismic Isolation in Structures (SCSI):Experimental and numerical studies 用于结构抗震隔离的悬架柱:实验和数值研究
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-07-01 DOI: 10.12989/EAS.2020.19.1.017
A. Shahabi, Gholamreza Zamani Ahari, M. Barghian
In this paper, a modified and improved seismic isolation system called suspension columns for seismic isolation was investigated. An experimental study of the proposed isolation method, together with theoretical and numerical analyses, has thoroughly been conducted. In the proposed method, during the construction of the foundation, some cavities are created at the position of the columns inside the foundation and the columns are placed inside the cavities and hanged from the foundation by flexible cables rather being directly connected to the foundation. Since the columns are suspended and due to the gap between the columns and walls of the cavities, the structure is able to move freely to each side thus, the transmitted seismic actions are reduced. The main parameter of this isolation technique is the length of the suspension cable. As the cable length is changed, the natural frequency of the structure is also changed, thus, the desired frequency can be achieved by means of an appropriate cable length. As the experimental phase of the study, a steel frame structure with two floors was constructed and subjected to the acceleration of three earthquakes using a shaking table with different hanging cable lengths. The structural responses were recorded in terms of acceleration and relative displacement. The experimental results were compared to the theoretical and numerical ones, obtained from the MATLAB programming and the finite element software ABAQUS, showing a suitable agreement between them. The results confirm the effectiveness of the proposed isolation method in reducing the seismic effects on the structure.
本文研究了一种改进和改进的悬架隔震体系。对所提出的隔离方法进行了实验研究,并进行了理论和数值分析。在本文提出的方法中,在基础施工时,在基础内柱的位置设置一些空腔,将柱放置在空腔内,并通过柔性电缆悬挂在基础上,而不是直接与基础相连。由于柱是悬浮的,并且由于柱和腔墙之间的间隙,结构能够自由地向每一侧移动,因此减少了传递的地震作用。这种隔离技术的主要参数是悬索的长度。随着电缆长度的变化,结构的固有频率也会发生变化,因此,通过适当的电缆长度可以达到所需的频率。作为研究的实验阶段,建造了一个两层的钢框架结构,并使用不同悬索长度的振动台承受三次地震的加速度。结构响应记录在加速度和相对位移方面。将实验结果与MATLAB编程和有限元软件ABAQUS的理论和数值结果进行了比较,结果表明两者吻合较好。结果证实了所提出的隔震方法在减小地震对结构的影响方面的有效性。
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引用次数: 1
Evaluation of structural operativity of two strategic buildings through Seismic Model 用地震模型评价两栋战略建筑的结构使用性能
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-07-01 DOI: 10.12989/EAS.2020.19.1.045
D. Foti, N. Giannoccaro, P. Greco, Michela Lerna, Raffaele Paolicelli, V. Vacca
This paper presents the experimental application of a new method for seismic vulnerability assessment of buildings recently introduced in literature, the SMAV (Seismic Model Ambient Vibration) methodology with reference to their operational limit state. The importance of this kind of evaluation arises from the civil protection necessity that some buildings, considered strategic for seismic emergency management, should retain their functionality also after a destructive earthquake. They do not suffer such damage as to compromise the operation within a framework of assessment of the overall capacity of the urban system. To this end, for the characterization of their operational vulnerability, a Structural Operational Index (IOPS) has been considered. In particular, the dynamic environmental vibrations of the two considered strategic buildings, the fire station and the town hall building of a small town in the South of Italy, have been monitored by positioning accelerometers in well-defined points. These measurements were processed through modern Operational Modal Analysis techniques (OMA) in order to identify natural frequencies and modal shapes. Once these parameters have been determined, the structural operational efficiency index of the buildings has been determined evaluating the seismic vulnerability of the strategic structures analyzed. his study aimed to develop a model to accurately predict the acceleration of structural systems during an earthquake.
本文介绍了文献中介绍的一种新的建筑物地震易损性评价方法,即参考建筑物运行极限状态的地震模型环境振动法(SMAV)的实验应用。这种评估的重要性来自于一些被认为是地震应急管理战略的建筑物在破坏性地震发生后也应保留其功能的民事保护必要性。它们不会受到损害,以致影响到在评估城市系统总体能力的框架内的运作。为此,为了描述其操作脆弱性,考虑了结构操作指数(IOPS)。特别是,意大利南部一个小镇的消防站和市政厅大楼这两座被认为具有战略意义的建筑的动态环境振动,已经通过在明确定义的点上定位加速度计来监测。这些测量通过现代操作模态分析技术(OMA)进行处理,以确定固有频率和模态振型。一旦这些参数确定,就确定了建筑物的结构运行效率指数,以评估所分析的战略结构的地震易损性。他的研究旨在开发一种模型,以准确预测地震期间结构系统的加速度。
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引用次数: 2
Enhanced salp swarm algorithm based on opposition learning and merit function methods for optimum design of MTMD 基于对立学习和优点函数法的改进salp群算法在MTMD优化设计中的应用
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-06-01 DOI: 10.12989/EAS.2020.18.6.719
Farzad Raeesi, Sina Shirgir, B. F. Azar, H. Veladi, H. Ghaffarzadeh
Recently, population based optimization algorithms are developed to deal with a variety of optimization problems. In this paper, the salp swarm algorithm (SSA) is dramatically enhanced and a new algorithm is named Enhanced Salp Swarm Algorithm (ESSA) which is effectively utilized in optimization problems. To generate the ESSA, an opposition-based learning and merit function methods are added to standard SSA to enhance both exploration and exploitation abilities. To have a clear judgment about the performance of the ESSA, firstly, it is employed to solve some mathematical benchmark test functions. Next, it is exploited to deal with engineering problems such as optimally designing the benchmark buildings equipped with multiple tuned mass damper (MTMD) under earthquake excitation. By comparing the obtained results with those obtained from other algorithms, it can be concluded that the proposed new ESSA algorithm not only provides very competitive results, but also it can be successfully applied to the optimal design of the MTMD.
最近,基于种群的优化算法被开发来处理各种优化问题。本文对salp群算法(SSA)进行了显著的改进,并将其有效地应用于优化问题中。为了生成ESSA,在标准SSA中添加了基于对立的学习和优点函数方法,以增强探索和开发能力。为了对ESSA的性能有一个清晰的判断,首先,将其用于求解一些数学基准测试函数。接下来,它被用来处理工程问题,例如在地震激励下优化设计配备多重调谐质量阻尼器(MTMD)的基准建筑。通过将所获得的结果与其他算法的结果进行比较,可以得出结论,所提出的新ESSA算法不仅提供了非常有竞争力的结果,而且可以成功地应用于MTMD的优化设计。
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引用次数: 3
Structure-soil-structure interaction in a group of buildings using 3D nonlinear analyses 基于三维非线性分析的建筑群结构-土-结构相互作用
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-06-01 DOI: 10.12989/EAS.2020.18.6.667
Behroozeh Sharifi, G. Nouri, A. Ghanbari
The current study compares the effect of structure-soil-structure interaction (SSSI) on the dynamic responses of adjacent buildings and isolated structures including soil-structure interaction (SSI) with the responses of fixed-base structures. Structural responses such as the relative acceleration, displacement, drift and shear force were considered under earthquake ground motion excitation. For this purpose, 5-, 10- and 15-story structures with 2-bay moment resisting frames resting on shallow foundations were modeled as a group of buildings in soft soil media. Viscous lateral boundaries and interface elements were applied to the soil model to simulate semi-infinite soil media, frictional contact and probable slip under seismic excitation. The direct method was employed for fully nonlinear time-history dynamic analysis in OpenSees using 3D finite element soil-structure models with different building positions. The results showed that the responses of the grouped structures were strongly influenced by the adjacent structures. The responses were as much as 4 times greater for drift and 2.3 times greater for shear force than the responses of fixed-base models.
本研究比较了结构-土-结构相互作用(SSSI)对相邻建筑物和隔震结构动力响应的影响,包括土-结构交互作用(SSI)和固定基础结构的响应。考虑了地震动激励下结构的相对加速度、位移、位移和剪力等响应。为此,将浅基础上的5层、10层和15层结构(具有2向抗弯框架)建模为软土介质中的一组建筑。将粘性侧向边界和界面单元应用于土壤模型,模拟地震激励下的半无限大土壤介质、摩擦接触和可能滑动。采用直接法在OpenSees中使用不同建筑位置的三维有限元土结构模型进行全非线性时程动力分析。结果表明,分组结构的响应受到相邻结构的强烈影响。与固定基础模型的响应相比,漂移的响应高达4倍,剪切力的响应高出2.3倍。
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引用次数: 3
Seismic performance of South Nias traditional timber houses: A priority ranking based condition assessment South Nias传统木结构房屋的抗震性能:基于条件评估的优先级排序
IF 1.5 4区 工程技术 Q2 Engineering Pub Date : 2020-06-01 DOI: 10.12989/EAS.2020.18.6.731
M. Sodangi, Z. Kazmi
Due to incessant earthquakes, many historic South Nias traditional timber houses have been damaged while some still stand today. As Nias is part of an extremely active tectonic region and the buildings are getting older by day, it is essential that these unique houses are well maintained and functioning well. A post-earthquake condition assessment was conducted on 2 selected buildings; 'Buildings'was found out to be poor and the main structural members were not performing as intended. In 'Buildings B',the columns were not well anchored to the ground, no tie beams to tie the columns together, and eventually, the timber columns moved in various directions during the earthquake. The frequent earthquakes along with deterioration due to lack of proper maintenance program are responsible for the non-survival of the buildings. Thus, a process guideline for managing the maintenance of these buildings was proposed. This is necessary because managing the maintenance works could help to extend the life of the buildings and seek to avoid the need for potentially expensive and disruptive intervention works, which may damage the cultural significance of the buildings.
由于不断的地震,许多历史悠久的南尼亚斯传统木结构房屋遭到破坏,但有些仍然屹立不倒。由于尼亚斯是一个非常活跃的构造区域的一部分,建筑也在日益老化,因此这些独特的房屋必须得到良好的维护和良好的功能。对选定的2栋建筑进行了震后状况评估;“建筑物”被发现很差,主要结构成员没有按预期工作。在“建筑物B”中,柱子没有很好地锚定在地面上,没有束梁将柱子绑在一起,最终,木柱在地震中向各个方向移动。频繁的地震以及由于缺乏适当的维护计划而导致的老化是建筑物无法生存的原因。因此,提出了管理这些建筑物维护的过程指南。这是必要的,因为管理维修工程可以帮助延长建筑物的寿命,并尽量避免需要可能昂贵和破坏性的干预工程,这可能会损害建筑物的文化意义。
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引用次数: 2
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