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hank888555銀蟲 (初入文壇)
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[求助]
求檢索論文是否已被SCI、EI收錄 已有1人參與
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論文題目: 1、AZ Lu, HY Chen, Y Qin, N Zhang. Shape optimisation of the support section of a tunnel at great depths[J]. Computers and Geotechnics, 2014, 61: 190–197. (看是否已SCI收錄) 2、Aizhong Lu, Ning Zhang, Hongyu Chen, Yuan Qin, Luqin Zhang. Analytic stress solutions for a circular pressure tunnel at great depth including support delay and pure slip boundary condition. In Proceedings of Conference on The 2014 ISRM European Rock Mechanics Symposium, Vigo, Spain, 27-29th May 2014. (看是否被EI或者ISTP收錄) 謝謝了! |
鐵桿木蟲 (著名寫手)
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Accession number: 20142217771325 Title: Analytic stress solutions for a circular pressure tunnel at great depth including support delay and pure slip boundary condition Authors: Lu, A.Z.1; Zhang, N.1; Chen, H.Y.1; Qin, Y.1; Zhang, L.Q.2 Author affiliation: 1 Institute of Hydroelectric and Geotechnical Engineering, North China Electric Power University, Beijing, China 2 Key Laboratory of Engineering Geomechanics, Institute of Geology and geophysics, Chinese Academy of Sciences, Beijing, China Source title: Rock Engineering and Rock Mechanics: Structures in and on Rock Masses - Proceedings of EUROCK 2014, ISRM European Regional Symposium Abbreviated source title: Rock Eng. Rock Mech.: Struct. Rock Masses - Proc. EUROCK, ISRM Eur. Reg. Symp. Monograph title: Rock Engineering and Rock Mechanics: Structures in and on Rock Masses - Proceedings of EUROCK 2014, ISRM European Regional Symposium Issue date: 2014 Publication year: 2014 Pages: 1003-1008 Language: English ISBN-13: 9781138001497 Document type: Conference article (CA) Conference name: 2014 ISRM European Regional Symposium on Rock Engineering and Rock Mechanics: Structures in and on Rock Masses, EUROCK 2014 Conference date: May 26, 2014 - May 28, 2014 Conference location: Vigo, Spain Conference code: 105191 Sponsor: Ayuntamiento de Vigo; Deputacion de Pontevedra; Geobrugg; Colegio Oficial de Ingenieros de Minas del Noroeste; Sibelco; et al., Publisher: Taylor & Francis - Balkema, P.O. Box 447, Leiden, 2300 AK, Netherlands Abstract: Based on the plane elastic complex function method, theoretical analysis on the stress field around a circular tunnel with ring lining subjected to in situ stresses and inner hydrostatic pressure is carried out. The results of two extreme boundary conditions cases, pure slip and pure bond, are compared with each other. The displacement release coefficient is considered. The calculation results show that the magnitude of the deformation completed before lining installation has great effects on the stress distribution in the lining. If the lining is installed at a proper moment, the degree of stress concentration in the lining can be minimized. When theYoung's modulus of the lining is much lower than that of the rock, stress solutions for two extreme boundary condition cases are roughly the same. The smaller the lateral pressure coefficient λ, the larger the differences between the corresponding stress solutions for two extreme boundary condition cases. © 2014 Taylor & Francis Group, London. Number of references: 13 Main heading: Boundary conditions Controlled terms: Hydrostatic pressure - Linings - Rock mechanics - Rocks Uncontrolled terms: Calculation results - Circular tunnels - Complex functions - Insitu stress - Lateral pressure coefficient - Pressure tunnel - Stress field - Stress solutions Classification code: 481.1 Geology - 502.1 Mine and Quarry Operations - 631.1.1 Liquid Dynamics - 921 Mathematics - 951 Materials Science Database: Compendex Compilation and indexing terms, © 2014 Elsevier Inc. |
鐵桿木蟲 (著名寫手)
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Shape optimisation of the support section of a tunnel at great depths 作者:Lu, AZ (Lu, A. Z.)[ 1 ] ; Chen, HY (Chen, H. Y.)[ 1 ] ; Qin, Y (Qin, Y.)[ 1 ] ; Zhang, N (Zhang, N.)[ 1 ] COMPUTERS AND GEOTECHNICS 卷: 61 頁: 190-197 DOI: 10.1016/j.compgeo.2014.05.011 出版年: SEP 2014 查看期刊信息 摘要 The shape optimisation of a cavity is typically performed without considering the previous support, which may significantly reduce the practical significance of such analyses. Even when an excavation section is optimised, failure of the surrounding rock in a tunnel cannot be prevented in the presence of excessive in situ stress. Thus, a support should be established to protect the stability of a tunnel from the failure of the surrounding rock. This study examines the optimal shape of the support that satisfies the optimisation criterion, which minimises the largest tangential stress along the inner edge of the support, for a specific net tunnel size and support strength. The optimisation process is to solve a series of forward problems using the conformal mapping method for a plane elasticity complex function. The tangential stress along the inner edge of the support is selected as the objective function, and the coefficients of the mapping function are considered as the design variables. The minimum value of the objective function is calculated based on the mixed penalty function method and the optimal support shape that satisfies the given constraints can be obtained. The stress state of an optimally shaped tunnel support is significantly improved compared to non-optimal configurations, and the stress concentration along the inner edge of the support is minimised. (C) 2014 Elsevier Ltd. All rights reserved. 關(guān)鍵詞 作者關(guān)鍵詞:Underground tunnel; Shape optimisation; Conformal mapping; Stress concentration; Mixed penalty function method KeyWords Plus:EVOLUTIONARY PROCEDURE; HARMONIC HOLES 作者信息 通訊作者地址: Lu, AZ (通訊作者) North China Elect Power Univ, Inst Hydroelect & Geotech Engn, Beijing 102206, Peoples R China. 地址: [ 1 ] North China Elect Power Univ, Inst Hydroelect & Geotech Engn, Beijing 102206, Peoples R China 電子郵件地址:lvaizhong@ncepu.edu.cn 基金資助致謝 基金資助機構(gòu) 授權(quán)號 Natural Science Foundation of China 11172101 Fundamental Research Funds for the Central Universities NCEPU13QN20 查看基金資助信息 出版商 ELSEVIER SCI LTD, THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND 類別 / 分類 研究方向:Computer Science; Engineering; Geology Web of Science 類別:Computer Science, Interdisciplinary Applications; Engineering, Geological; Geosciences, Multidisciplinary 文獻(xiàn)信息 文獻(xiàn)類型:Article 語種:English 入藏號: WOS:000340305100019 ISSN: 0266-352X 電子 ISSN: 1873-7633 期刊信息 Impact Factor (影響因子): Journal Citation Reports® 其他信息 IDS 號: AN0WQ Web of Science 核心合集中的 "引用的參考文獻(xiàn)": 15 Web of Science 核心合集中的 "被引頻次": 0 |
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