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Applying the AHP-FUZZY method to evaluate the measure effect of rubble roadbed engineering in permafrost regions of Qinghai-Tibet Plateau: a case study of Chaidaer-Muli Railway 被引量:1
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作者 Wei Cao Yu Sheng +1 位作者 Ji Chen JiChun Wu 《Research in Cold and Arid Regions》 CSCD 2018年第6期447-457,共11页
This article attempts to investigate the measure effect of rubble roadbed engineering in permafrost regions of Qinghai-Tibet Plateau. As a case study, Chaidaer-Muli Railway is used to evaluate the measure effect of ru... This article attempts to investigate the measure effect of rubble roadbed engineering in permafrost regions of Qinghai-Tibet Plateau. As a case study, Chaidaer-Muli Railway is used to evaluate the measure effect of rubble roadbed engineering in permafrost regions. The AHP(Analytic Hierarchy Process) method is thus employed to establish the evaluation indicator system. The evaluation factor is selected by analyzing the mutual relation between the permafrost environment and roadbed engineering. Thus, a hierarchical structure model is established based on the selected evaluation indices. Each factor is weighted to determine the status in the evaluation system, and grading standards are built for providing a basis for the evaluation. Then, the fuzzy mathematical method is introduced to evaluate the measure effect of rubble roadbed engineering in permafrost regions along the Chadaer-Muli Railway. Results show that most of the permafrost roadbed is in a preferable condition(b) along the Chaidaer-Muli Railway due to rubble engineering measures. This proportion reaches to 86.1%. The proportion in good(a), general(c) and poor states(d) are 0.0%, 7.5% and 6.4%, respectively, in all the evaluation sections along the Chaidaer-Muli Railway. Ground-temperature monitoring results are generally consistent with AHP-FUZZY evaluation results. This means that the AHP-FUZZY method can be applied to evaluate the effect of rubble roadbed engineering measures in permafrost regions. The effect evaluation of engineering measures will provide timely and effective feedback information for further engineering design. The series of engineering measures will more effectively protect permafrost stability. 展开更多
关键词 measure effect evaluation rubble roadbed engineering permafrost regions of Qinghai-Tibet Plateau AHP-FUZZY method Chaidaer-Muli Railway
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Brief Analysis of Construction Technology of Subgrade Protection Engineering in Highway Engineering
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作者 SULongmiao 《外文科技期刊数据库(文摘版)工程技术》 2022年第6期078-081,共4页
With the rapid development of China's economy, the relevant state departments have also paid more and more attention to the construction technology of highway subgrade protection engineering. In order to effective... With the rapid development of China's economy, the relevant state departments have also paid more and more attention to the construction technology of highway subgrade protection engineering. In order to effectively promote the substantial improvement of the construction efficiency of highway subgrade protection projects, construction enterprises should strictly take the actual situation as the basis, actively introduce new and efficient emerging technologies, complete the subgrade protection work with high quality, and at the same time regard the subgrade protection work as the key to the construction process, so as to master the impact of this work on the overall construction quality, and lay the foundation for the significant improvement of the project quality. In view of this, this paper has carried out in-depth research on the construction technology of highway engineering subgrade protection engineering. 展开更多
关键词 highway engineering roadbed protection engineering construction technology
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