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      Detection and Prediction of Internal Damage in the Ancient Timber Structure Based on Optimal Combined Model

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          Abstract

          It is currently known that using stress wave and drilling resistance to detect the internal damage in the ancient timber structure is not a highly precise process. To improve the detection precision of this process, a simulation test was used to detect the internal damage of poplar and elm in ancient buildings. In this empirical study, we compared the detection precision of these two detection methods. Based on the idea of variable weight, we introduced three combined forecasting models based on the IOWA operator, IOWGA operator, and IOWHA operator to predict the internal damage in the ancient timber structure. The results show that the combined forecasting model based on the IOWA operator is more effective in predicting compared to a single detection method and other combined forecasting models. To be more specific, the results show that the detection precision of the combined model is increased by 25.8% and 4.7%, respectively, compared to the precision of the stress wave and drilling resistance tests. The error indicators of the combined forecasting model based on the IOWA operator are better than those of the other combined forecasting models. In addition, the analysis results based upon cross-validation theory show the combined forecasting model based on the IOWA operator has the best applicability, which provides a new practical method for evaluating internal damage of timber components in ancient buildings.

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          Most cited references29

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          Families of OWA operators

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            Induced aggregation operators

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              The ordered weighted geometric averaging operators

              Q. L. Da, Z. Xu (2002)
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                Author and article information

                Journal
                Advances in Civil Engineering
                Advances in Civil Engineering
                Hindawi Limited
                1687-8086
                1687-8094
                August 14 2019
                August 14 2019
                : 2019
                : 1-18
                Affiliations
                [1 ]College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, China
                [2 ]Institute of Earthquake Resistance and Disaster Reduction, Beijing University of Technology, Beijing 100124, China
                [3 ]Key Science Research Base of Safety Assessment and Disaster Mitigation for Traditional Timber Structure (Beijing University of Technology), State Administration for Cultural Heritage, Beijing 100124, China
                [4 ]Beijing Engineering Research Center of Historic Buildings Protection, Beijing 100124, China
                [5 ]Shanghai Research Institute of Building Sciences, Shanghai 200032, China
                Article
                10.1155/2019/7108262
                bf3fa08c-c3aa-48ac-aebc-efe160a20696
                © 2019

                http://creativecommons.org/licenses/by/4.0/

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