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Experimental and numerical investigation of the seismic performance of an A-frame-truss-column hybrid supporting structure

机译:A框架-桁架-柱混合支撑结构抗震性能的试验与数值研究

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A hybrid structural system designed for use in large thermal power plants in China to house air-cooled condenser systems is investigated. The hybrid structure consists of a series of metal A-frames resting on a steel space truss supported by an array of reinforced concrete columns. To gain a better understanding of this structural system, a one-eighth (1: 8) scale test structure modeled after a prototype structure was constructed and tested. The test structure was subjected to both free vibration and forced excitation tests with the following objectives: (1) determining its modal properties and seismic response characteristics, (2) gaining insight into its response and most probable failure modes under dynamic excitations, (3) obtaining some useful experimental data for future research, and (4) providing important data to complement the Chinese seismic design code as well as to guide the design of this type of structure in practical engineering applications. The free vibration tests were carried out by inducing an initial displacement to the structure and measuring its natural frequencies and mode shapes. The forced excitation tests consist of a series of quasi-static and pseudo-dynamic tests. For the quasi-static tests, 10 reciprocating displacement excitations with peaks ranging from 6 to 100 mm were used, and for the pseudo-dynamic tests, six ground motions with scaled maximum accelerations ranging from 50 to 800 cm/s 2 were employed. Based on the results of these tests, modal properties of the hybrid structure such as natural frequencies, mode shapes, and equivalent damping ratios, as well as some seismic response characteristics such as seismic shears, accelerations, deformations, interstory drifts, roof drifts, and hold-down forces were determined and presented. In addition, nonlinear analysis of the test and prototype structures was conducted using the finite element software ANSYS and compared with the test results. Detailed damage inspection was performed, and important findings were summarized.
机译:研究了一种混合结构系统,该系统设计用于中国的大型火力发电厂以容纳风冷冷凝器系统。混合结构由一系列金属A型框架组成,这些A型框架搁置在由一系列钢筋混凝土柱支撑的钢制空间桁架上。为了更好地理解此结构系统,在构造并测试了原型结构之后,对八分之一(1:8)规模的测试结构进行了建模。对测试结构进行了自由振动和强制激励测试,其目标如下:(1)确定其模态特性和地震响应特性;(2)深入了解其响应和动态激励下最可能的失效模式;(3)获得一些有用的实验数据,以备将来研究之用;(4)提供重要数据以补充中国的抗震设计规范,并在实际工程应用中指导此类结构的设计。通过使结构产生初始位移并测量其固有频率和振型来进行自由振动测试。强制激励测试包括一系列准静态和拟动态测试。对于准静态测试,使用了10次往复位移激励,其峰值范围为6至100 mm,对于拟动力测试,采用了6次地面运动,其最大加速度范围为50至800 cm / s 2。根据这些测试的结果,混合结构的模态特性(例如固有频率,模态形状和等效阻尼比)以及一些地震响应特征(例如地震剪切,加速度,变形,层间位移,屋顶位移和确定并展示压紧力。此外,使用有限元软件ANSYS对测试和原型结构进行了非线性分析,并与测试结果进行了比较。进行了详细的损坏检查,并总结了重要的发现。

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