Dynamic certification and assessment of the buildings life cycle under regular explosive impacts

O. Trofymchuk, I. Kaliukh, V. Dunin, Sergiy Kyrash
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Abstract

Today in Ukraine, there is no single legalized, generally accepted methodology (at the level of a Ukrainian building standard) for dynamic certification of buildings and structures. A unified approach is proposed as such a technique. It includes four components: visual inspection of buildings; experimental studies of the dynamic response of buildings or structures to explosive effects; mathematical modeling of the stress-strain state of the object under study; synthesis of the results of visual inspection; experimental studies and numerical simulation in order to generalize them systematically. As an approbation, the deterioration of the resource of reinforced concrete structures of residential buildings under the conditions of constant mass industrial explosions with a capacity of 500 to 700 tons in the quarry of Southern GZK (Mining and Processing Plant) in the city of Kryvyi Rih, Ukraine, has been studied. Based on the processing of numerous experimental data and the results of mathematical modeling, a probabilistic model for predicting the deterioration of the technical condition of reinforced concrete structures of the Center for Children and Youth Creativity “Mriya” has been obtained. Calculations of the risks of destruction of the building’s load-bearing elements for its vulnerable areas made it possible to clarify its service life. It decreased by ~ 30 years compared to the standard in 2012.
常规爆炸影响下建筑物生命周期动态认证与评估
今天在乌克兰,没有单一的合法的,普遍接受的方法(在乌克兰建筑标准的水平上)对建筑物和结构进行动态认证。提出了一种统一的方法作为这种技术。它包括四个部分:对建筑物进行目视检查;建筑物或构筑物在爆炸作用下动力响应的实验研究;研究对象应力-应变状态的数学建模;目视检查结果的综合;实验研究和数值模拟,以便系统地推广它们。作为一种认可,在乌克兰Kryvyi Rih市的Southern GZK(采矿和加工厂)采石场进行了500至700吨的持续大规模工业爆炸条件下,对住宅建筑钢筋混凝土结构资源的恶化进行了研究。在对大量实验数据进行处理和数学建模的基础上,建立了预测“Mriya”青少年创意中心钢筋混凝土结构技术状况恶化的概率模型。对建筑物的脆弱区域的承重元素的破坏风险的计算使得澄清其使用寿命成为可能。与2012年的标准相比,缩短了约30年。
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