识别建筑物和结构的建筑构件中隐藏的损坏,以减少其被破坏的风险

O.O. Yavorska, S.S. Barabanov
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引用次数: 0

摘要

问题陈述。在由爆炸、火灾和地震等动态影响引发的紧急情况下,有必要对物体的稳定性进行监测,以评估其是否适合继续运行。使用振动声学方法、软件和技术手段监测建筑结构中的隐性损坏,确保建筑和结构的安全运行。方法。数据分析和归纳、计算机建模、使用振动声学方法对结构稳定性进行实验研究。研究成果。考虑了:混凝土稳定性、钢筋混凝土、砖块和其他承重结构构件的损失;由于内部损坏的累积,承重建筑结构逐渐减弱所表现出的风险因素。结构稳定性的突然丧失发生在结构构件的损伤积累到临界量或裂缝快速增长之后,这些裂缝是由于任何动态影响导致极度受力结构突然卸载而激活的。通过使用有限元方法对破坏过程进行建模,可以确定,早在结构表面的裂缝可以被目视识别之前,隐藏的破坏区域就已经在建筑物墙体结构内部积极扩散。利用视觉和振动声学方法监测建筑物和结构状况的主要参数已经确定。由于研究对象是建筑物和结构的部分破坏(即不是根本原因,而是主要负面因素综合影响的后果),因此提出了用于评估稳定性损失风险的两大类风险因素。第一类与通过目视检查方法发现的外部结构损坏有关。第二组与隐性损坏检测有关,其参数由振动声学方法确定。通过比较和选择该组中的最大风险,确定稳定性损失的整体风险。科学新颖性。通过考虑破坏后果的振动声学控制参数和评估结构稳定性损失的风险,进一步开发了识别建筑物和结构的结构元件隐性破坏的方法。实际意义。研究成果使我们有可能改进方法,利用振动声学监测评估由于出现观察到的和隐藏的裂缝系统而导致的介质结构变化。
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IDENTIFICATION OF HIDDEN DAMAGE IN CONSTRUCTIVE ELEMENTS OF BUILDINGS AND STRUCTURES TO REDUCE THE RISKS OF THEIR DESTRUCTION
Problem statement. In emergency situations, which are activated by dynamic impacts from explosions, fires and earthquakes, it is necessary to monitor the stability of objects to assess their suitability for further operation. Purpose of the study. ensuring the safe operation of buildings and structures using methods, software and technical means for vibroacoustic monitoring of hidden damage in building structures. Methods. Analysis and generalization of data, computer modeling, experimental studies of the structures stability using the vibroacoustic method. Research results. Considered: loss of concrete stability, reinforced concrete, bricks and other elements of load-bearing structures; risk factors manifested in the gradual weakening of load-bearing building structures due to the accumulation of internal damage. Sudden loss of stability of structures occurs after the accumulation of a critical amount of damage in structural elements or the rapid growth of cracks, which are activated by the sudden unloading of extremely stressed structures as a result of any dynamic influences. By modeling the destruction process using the finite element method, it has been established that long before cracks on the surfaces of structures can be visually identified, zones of hidden damage can actively spread inside the wall structures of buildings. The main parameters for monitoring the condition of buildings and structures using visual and vibroacoustic methods have been determined. Due to the fact that the object of research is the partial destruction of buildings and structures (that is, not the root cause, but the consequences of the influence of a complex of negative main factors), two main groups of risk factors for assess the risks of stability loss have been proposed. The first group is associated with the detection of external structural damage identified by visual inspection methods. The second group is associated with the detection of hidden damage, the parameters of which are determined by the vibroacoustic method. The integral risk of stability loss is determined by comparing and selecting the maximum risk in the group. Scientific novelty. The methodology for identifying hidden damage in structural elements of buildings and structures has been further developed, which is distinguished by taking into account the parameters of vibroacoustic control of the destruction consequences and assessing the risks of the structures stability loss. Practical significance. The research results make it possible to improve the method for assessing changes in the structure of the medium as a result of the occurrence of observed and hidden systems of cracks using vibroacoustic monitoring.
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