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Safety State Evaluation Method Based on Attribute Recognition Model for Ancient Timber Buildings

机译:基于古木建筑物属性识别模型的安全状态评估方法

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To improve accuracy of safety state evaluation results for ancient timber buildings and to know the real state of the building, a safety grade evaluation model of ancient timber buildings is established based on attribute mathematic theory. From the perspective of macro, micro, qualitative, and quantitative, 22 factors may adversely affect the safety state of ancient timber building are considered in this model. First, evaluation system is established, and evaluation indexes are selected based on former study, seismic damage data, and Chinese current code about ancient timber buildings. In the evaluation system, whole building is divided into four parts, which are wood frame, enclosing wall, foundation, and plinth. Different parts contain different components. Every component has its own evaluation indexes. Second, based on the AHP and entropy method, the comprehensive empowering method is used to determine the weights of the indexes. Third, the attribute recognition model is established to identify the safety grade of components or units. Fourth, based on the evaluation results of components, safety grade of units is identified. Then, safety degree of the entire building is determined by the minimum safety grade of units. At last, the model is applied to the “Liben hall” in village Siping, Zhejiang province, China, and the assessment results are consistent with the results of damage identification.
机译:为提高古代木材建筑的安全国家评估结果的准确性,了解建筑物的真实状态,基于属性数学理论建立了古代木材建筑的安全级评价模型。从宏观,微观,定性和定量的角度来看,22个因素可能会对这个模型中考虑的古代木材建筑的安全状态产生不利影响。首先,建立评估系统,基于前研究,地震损伤数据和关于古代木材建筑的中国当前代码来选择评估指标。在评估系统中,整个建筑物分为四个部分,是木材框架,封闭墙壁,基础和底座。不同的部件包含不同的组件。每个组件都有自己的评估索引。其次,基于AHP和熵方法,综合赋权方法用于确定索引的权重。第三,建立属性识别模型以识别组件或单位的安全等级。第四,基于组件的评估结果,确定单位的安全等级。然后,整个建筑物的安全程度由单位的最低安全等级决定。最后,该模型适用于浙江省浙江省村村的“Liben Hall”,评估结果与损害识别结果一致。

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