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1.
为研究屋盖开孔对大跨结构风效应的影响,在边界层风洞中开展了大跨开合屋盖刚性模型风洞测压试验,分析了结构表面风荷载分布特征,基于时域分析法研究了屋盖开合对风致响应的影响。结果表明:大跨结构模态密集,第一阶模态能量最大,高阶成分的贡献不容忽视;屋盖开洞能有效的减小屋面风荷载,降低位移响应与加速度响应,减小风振系数。研究结果可为大跨开合屋盖风荷载设计提供参考。  相似文献   

2.
对典型矩形高层建筑进行风洞试验,根据试验结果计算了各风向角下的等效静风荷载和风振响应,同时采用《建筑结构荷载规范》(GB50009-2012)计算方法对该建筑正交角度下的风荷载进行计算,结合风洞试验风荷载与规范计算结果,研究典型矩形高层建筑等效静风荷载和加速度响应分布规律。结果表明:结构基底风致响应最不利角度并非完全出现在正交角度,风洞试验楼层风荷载整体趋势与规范计算结果相同,数值上存在差异,宜以风洞试验结果为准,该结构的顶层加速度响应小于高规限值,舒适度满足要求。  相似文献   

3.
地下结构抗震分析的振动法与波动法对比研究   总被引:2,自引:0,他引:2       下载免费PDF全文
针对地下结构抗震分析中应用广泛的波动方法与振动方法,从物理方程和有限元格式出发,明确了两种方法的区别与联系。通过标准数值试验,证明了振动方法是波动方法采用下卧刚性基岩假设和地层水平无限延伸假设,仅考虑SV波垂直向上入射的一种特例。采用波动方法模拟弹性地基,对比振动方法结果,表明弹性地基和刚性地基上地表位移响应和隧道结构内力响应均有显著差异。建议应根据具体场地条件,选择振动或波动方法进行地下结构抗震设计研究。  相似文献   

4.
塔巴庙低渗致密砂岩渗透率有效应力定律实验研究   总被引:7,自引:2,他引:5       下载免费PDF全文
为了从实验角度探索低渗砂岩是否存在很小的ESCK值及重新认识低渗砂岩ESCK的变化规律,用两种修正的析因设计方案开展了塔巴庙低渗致密砂岩渗透率有效应力定律实验研究.一种方案包含了3个循环,每个循环是在孔隙流体压力不变,通过加载和卸载围压完成的;另一种方案包含4个循环,每个循环是在围压不变,通过降低和增加孔隙流体压力完成的.采用稳态法采集每个测点的渗透率值,并选择合适的经验模型拟合实验数据.为了使模型更好地拟合实验数据,本文采用最大似然函数法确定的转换系数转换实验得到的渗透率数据,使拟合得到的经验模型计算的渗透率值与实验值偏差的联合概率密度趋于极大值且残余平方和最小.拟合得到的经验模型可以用渗透率-围压-内压响应面直观地表示,再用Bernabe的ESCK计算式将这一响应面转换成渗透率有效应力系数ESCK-围压-内压响应面.ESCK响应面的响应特征表明,ESCK随围压和孔隙流体压力的变化而变化,随围压的增加而降低,随内压的增加而增加,反之亦然;实验研究还表明,ESCK的变化范围在0.0~1.02之间,这一变化范围和以往实验的结果存在巨大的差异,为此,文中分析了产生这一差异原因,同时提出一新的机理模型解释了实验获取的ESCK的变化规律是低渗岩石中微裂缝和孔隙变形共同作用的结果.  相似文献   

5.
基于时域理论研究输电塔在风振作用下的疲劳可靠性问题。本文采用Davenport谱模拟脉动风速,通过分析计算杆件内力,得到风荷载时程数据。利用分析软件SAP2000建立结构的有限元模型,将时程荷载施加到结构有限元模型上,求得输电塔关键杆件应力时程响应。采用雨流法统计分析应力时程数据,得到应力循环幅值及其应力均值。基于疲劳理论的Basquin方程、Miner累积损伤准则以及Goodman修正方程,推导出处理疲劳问题的概率数学模型。结合平均风的分布概率以及计算结构疲劳寿命的方法,得到关键杆件在一定可靠度下的疲劳寿命。通过文章分析可知,随着可靠度数值的变化,结构的疲劳寿命相差极大。  相似文献   

6.
大跨网架屋盖挑檐部分风致响应较大,提出附加杆件、粘弹性阻尼器及粘滞阻尼器三种加固减振方法。设计制作正置四角锥体单元空间网架足尺子结构试验模型,基于带悬挑平屋盖风压分布风洞试验数据,对三种加固足尺子结构试验模型进行不同风向角下风荷载时程的加载。分析结构风致加速度与位移响应,结果表明:附加杆件加固后网架刚度增大,加速度响应增大,位移响应减小;附加粘弹性阻尼器,结构加速度与位移响应均降低;附加粘滞阻尼器,结构加速度响应减小,位移减小效果不明显。  相似文献   

7.
本文对于排架支承式渡槽结构的风致反应进行了动力有限元计算分析和研究,得出了排架支承式渡槽结构风致反应的一些规律,为渡槽结构的抗风设计提供了参考依据。  相似文献   

8.
利用有限元数值模拟方法研究半无限空间中的动力响应问题时,人工边界的选取对于计算结果的可靠性与准确性有直接的影响。本文利用ABAQUS有限元软件计算土-结构地震响应,分析了选用不同人工边界对计算结果的影响。通过与远置边界自由场和土-结构模型的数值结果对比,讨论了底边界分别采用固定边界和黏性边界;侧边界分别采用固定边界、绑定边界、竖向约束边界和黏性边界时的计算误差。研究表明,利用ABAQUS软件计算土-结构动力相互作用影响时,黏性边界适合作为非刚性地基问题的底边界,固定边界适合作为刚性地基问题底边界。对于侧向边界当采用相对计算宽度较小模型时,固定边界和黏性边界无法再现自由场和土-结构响应;绑定边界和竖向约束边界可以模拟精确的自由场响应,并在动力土-结构作用分析中具有良好的性能。  相似文献   

9.
膜结构风振中流固耦合效应的数值模拟研究   总被引:2,自引:1,他引:1  
对膜结构风致振动中的流固耦合效应进行了数值模拟研究。采用数值模拟方法中的强耦合整体方法,引入伪实体模型,通过伪实体模型方程,流体方程与结构方程的隐式弱形式来构成整个体系的强耦和整体式方程。采用该方法对双坡型膜结构在考虑和不考虑耦合效应下的风振响应等重要参数进行了计算分析,并将计算结果与已有风洞试验结果进行对比,结果符合良好。同时计算了结构周围空气的风速矢量、压力场分布,得到了空气流体场的变化规律。结果表明采用强耦合整体方法计算所得的解具有很好的收敛性,可以较准确地预测膜结构的风致动力响应。  相似文献   

10.
利用地震模拟振动台和自行设计的刚性渗流模型箱,模拟渗流条件下振动对井-承压含水层系统水位的影响过程.通过输入12组不同的振动频率和振动加速度的正弦波及1组模拟EL Centro波,探察水位与不同输入频率和加速度的振动响应关系,并同步观测含水层井水位变化过程中对应响应加速度、孔隙压力的变化特征.结果表明:测压水位的变化形态与输入振动的频率有关,并且与孔隙压力的变化一致,输入低频(0.5、1、2 Hz)时,孔隙压力振荡下降,测压水位呈阶降变化;输入高频(5、10、15 Hz)时,孔隙压力振荡上升,测压水位以阶升变化为主,验证了测压水位的变化主要是振动引起含水层孔隙压的变化导致的.本次实验可为今后开展此类实验提供一般的研究思路和技术经验,并为进一步探究含水层形变-孔隙压-水位之间的定量关系传递机理提供基础数据支持.  相似文献   

11.
Radar‐based estimates of rainfall are affected by many sources of uncertainties, which would propagate through the hydrological model when radar rainfall estimates are used as input or initial conditions. An elegant solution to quantify these uncertainties is to model the empirical relationship between radar measurements and rain gauge observations (as the ‘ground reference’). However, most current studies only use a fixed and uniform model to represent the uncertainty of radar rainfall, without consideration of its variation under different synoptic regimes. Wind is such a typical weather factor, as it not only induces error in rain gauge measurements but also causes the raindrops observed by weather radar to drift when they reach the ground. For this reason, as a first attempt, this study introduces the wind field into the uncertainty model and designs the radar rainfall uncertainty model under different wind conditions. We separate the original dataset into three subsamples according to wind speed, which are named as WDI (0–2 m/s), WDII (2–4 m/s) and WDIII (>4 m/s). The multivariate distributed ensemble generator is introduced and established for each subsample. Thirty typical events (10 at each wind range) are selected to explore the behaviours of uncertainty under different wind ranges. In each time step, 500 ensemble members are generated, and the values of 5th to 95th percentile values are used to produce the uncertainty bands. Two basic features of uncertainty bands, namely dispersion and ensemble bias, increase significantly with the growth of wind speed, demonstrating that wind speed plays a considerable role in influencing the behaviour of the uncertainty band. On the basis of these pieces of evidence, we conclude that the radar rainfall uncertainty model established under different wind conditions should be more realistic in representing the radar rainfall uncertainty. This study is only a start in incorporating synoptic regimes into rainfall uncertainty analysis, and a great deal of more effort is still needed to build a realistic and comprehensive uncertainty model for radar rainfall data. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

12.
As high‐rise buildings are built taller and more slender, their dynamic behavior becomes an increasingly critical design consideration. Wind‐induced vibrations cause an increase in the lateral wind design loads, but more importantly, they can be perceived by building occupants, creating levels of discomfort ranging from minor annoyance to severe motion sickness. The current techniques to address wind vibration perception include stiffening the lateral load‐resisting system, adding mass to the building, reducing the number of stories, or incorporating a vibration absorber at the top of the building; each solution has significant economic consequences for builders. Significant distributed damage is also expected in tall buildings under severe seismic loading, as a result of the ductile seismic design philosophy that is widely used for such structures. In this paper, the viscoelastic coupling damper (VCD) that was developed at the University of Toronto to increase the level of inherent damping of tall coupled shear wall buildings to control wind‐induced and earthquake‐induced dynamic vibrations is introduced. Damping is provided by incorporating VCDs in lieu of coupling beams in common structural configurations and therefore does not occupy any valuable architectural space, while mitigating building tenant vibration perception problems and reducing both the wind and earthquake responses of the structure. This paper provides an overview of this newly proposed system, its development, and its performance benefits as well as the overall seismic and wind design philosophy that it encompasses. Two tall building case studies incorporating VCDs are presented to demonstrate how the system results in more efficient designs. In the examples that are presented, the focus is on the wind and moderate earthquake responses that often govern the design of such tall slender structures while reference is made to other studies where the response of the system under severe seismic loading conditions is examined in more detail and where results from tests conducted on the viscoelastic material and the VCDs in full‐scale are presented. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

13.
本文提出了圆球减振装置对风力发电高塔振动控制的工作原理和计算方法,并对其控制效果进行了理论研究。首先利用拉格朗日方程推导得到圆球减振装置的自振频率及其对单自由度系统的被动控制力,并推广至多自由度系统。进而将风力发电高塔等效为集中质点模型,建立了风塔-减振装置体系的运动微分方程。用谐波叠加法模拟得到脉动风速时程,分析比较了风力发电高塔在无控及有控状态下的动力响应及疲劳寿命。计算结果表明,圆球减振装置是一种简单、经济和实用的减振装置,能够有效减小风塔的动力响应,延长其疲劳寿命。  相似文献   

14.
磁流变阻尼器对高层建筑风振舒适度的半主动控制分析   总被引:1,自引:0,他引:1  
高层建筑风振舒适度的控制是结构抗风设计的一项重要内容。本文提出了磁流变阻尼器对高层建筑风振舒适度控制的一种设计方法。由于加速度是舒适度的判别标准,因此,首先通过对依据现行规范计算和用计算机模拟两种方法下得到的加速度进行比较,进而对模拟的脉动风荷载进行合理的修正,并以此作为抗风设计的依据;其次,根据磁流变阻尼器在不同位置时的控制效果,合理地布置控制装置,在此基础上,通过对加速度的有效控制来满足结构舒适度要求;最后,对磁流变阻尼器的参数进行合理的设计,达到优化的目的。  相似文献   

15.
Flow structure and wind pressure distribution caused by obtuse obstacles are usually the focuses in Computational Wind Engineer researches (CWE). By solving the non-hydrostatical dynamic equations, PUMA model (Peking University Model of Atmospheric Environment) was developed and applied to simulating the flow structure and wind pressure distribution around a tower-shaped building. Evaluation about the wind environment and wind loads around the building was obtained through the analysis of the numerical simulation results and wind tunnel data. Comparisons between the simulation and wind tunnel study indicate that numerical simulation results agree well in the flow field and wind pressure distribution around the tower-shaped building. On the other hand, the horizontal grid interval of 2 m and the vertical grid of 3 m were still too crude to simulate the flow structure and wind pressure distribution on the building surface more exactly in detail; and the absence of suitable pressure perturbation parameterization scheme between the solid and the adjacent space also limits the accuracy of the numerical simulation. The numerical simulation model can be used to evaluate the wind environment and wind load around high buildings.  相似文献   

16.
从克拉玛依市通讯新村12号住宅楼所处的自然环境条件、风振测试、楼房风荷载计算等方面,分析了12号楼房动力特性、楼房风振影响程度以及引起楼房风振原因。造成克拉玛依市通讯新村12号楼风振的原因是,该楼楼房基础互不相连,整体性差,而且楼房楼层高,基础浅,抗风能力差;其次是结构突出的0.5 m纵墙外挑墙垛,增强了风振响应。对该楼房采取减振措施后取得显著的减振效果,减振率达82%。  相似文献   

17.
矩形高层建筑扭转动力风荷载解析模型   总被引:4,自引:0,他引:4  
本文通过研究不同长宽比、高宽比的矩形棱柱体在边界层风洞中典型攻角下的扭矩,提出了矩形高层建筑扭矩功率谱密度、均方根扭矩系数和Strouhal数的经验公式,并对相干函数作了一定的探讨,建立了完整的扭转动力风荷载解析模型。该模型和试验结果吻合较好,证明它是合理有效的,可在此基础上建立高层建筑扭转动力响应频域计算方法。  相似文献   

18.
地王大厦风振TMD主被动切换混合控制研究   总被引:3,自引:0,他引:3  
本文采用调谐质量阻尼器对地王大厦这一高层建筑在风荷载作用下的顶点位移进行主被动混合控制,即508重现期风荷载作用下用TMD被动控制,1008重现期风荷载作用下切换为TMD主动控制。理论分析和计算表明,这种控制方式造价低,经济效果佳,以较小的能量输入可取得较优的控制效果。  相似文献   

19.
The Wind Erosion Prediction System (WEPS) and Revised Wind Erosion Equation (RWEQ) are widely used for estimating wind‐induced soil erosion at a field scale. Wind is the principal erosion driver in the two models. Wind erosivity, which describes the capacity of wind to cause soil erosion, is defined as erosive wind power density (WPD) in WEPS, and wind value (W) in RWEQ. In this study, the daily average WPD (AWPD) and the daily average W (Wf) were chosen to investigate the effect of averaging time on wind erosivity estimation based on observed wind data. We compare the daily AWPD and Wf calculated from 1, 5, 10, 15, 30, and 60 minute average wind speed data. The results of comparisons indicate that averaging wind speed can significantly influence estimates of wind erosivity. Compared with the daily AWPD and Wf calculated from one minute average wind speed data, all daily AWPD and Wf values calculated from 5, 10, 15, 30, and 60 minute averaged wind speeds tend to be significantly lower than values calculated from one minute values. In general, longer averaging times tend to produce smaller values of daily AWPD or Wf, which may lead to an under‐estimation of wind erosion. Further studies are needed to extend and apply the findings obtained in this study to actual wind erosion predictions. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

20.
The insertion of steel braces equipped with viscoelastic dampers (VEDs) (‘dissipative braces’) is a very effective technique to improve the seismic or wind behaviour of framed buildings. The main purpose of this work is to compare the earthquake and wind dynamic response of steel‐framed buildings with VEDs and achieve optimal properties of dampers and supporting braces. To this end, a numerical investigation is carried out with reference to the steel K‐braced framed structure of a 15‐storey office building, which is designed according to the provisions of Eurocodes 1 and 3, and to four structures derived from the first one by the insertion of additional diagonal braces and/or VEDs. With regard to the VEDs, the following cases are examined: absence of dampers; insertion of dampers supported by the existing K‐braces in each of the structures with or without additional diagonal braces; insertion of dampers supported by additional diagonal braces. Dynamic analyses are carried out in the time domain using a step‐by‐step initial stress‐like iterative procedure. For this purpose, the frame members and the VEDs are idealized, respectively, by a bilinear model, which allows the simulation of the nonlinear behaviour under seismic loads, and a six‐element generalized model, which can be considered as an in‐parallel‐combination of two Maxwell models and one Kelvin model. Artificially generated accelerograms, whose response spectra match those adopted by Eurocode 8 for a medium subsoil class and for different levels of peak ground acceleration, are considered to simulate seismic loads. Along‐wind loads are considered assuming, at each storey, time histories of the wind velocity for a return period Tr=5 years, according to an equivalent spectrum technique. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

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