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巖體錨固與巖土工程新進(jìn)展

巖體錨固與巖土工程新進(jìn)展

作者:王樹仁
出版社:清華大學(xué)出版社出版時(shí)間:2016-11-01
開本: 32開 頁數(shù): 410
本類榜單:建筑銷量榜
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巖體錨固與巖土工程新進(jìn)展 版權(quán)信息

  • ISBN:9787302454458
  • 條形碼:9787302454458 ; 978-7-302-45445-8
  • 裝幀:一般膠版紙
  • 冊數(shù):暫無
  • 重量:暫無
  • 所屬分類:>

巖體錨固與巖土工程新進(jìn)展 本書特色

本書總結(jié)了作者近年來關(guān)于巖石力學(xué)基礎(chǔ)理論、分析方法以及創(chuàng)新技術(shù)和工程應(yīng)用的*研究成果。全 書分為巖石試驗(yàn)、巖石錨桿、注漿錨索、隧道工程、邊坡工程和采礦工程 6章,主要闡述了巖板斷裂鉸接成 拱過程及其失穩(wěn)破壞特征,巖石錨桿破壞模式及其力學(xué)機(jī)制,注漿錨索的尺度效應(yīng)及其傳力特性,以及近年 來在隧道工程、邊坡工程和采礦工程實(shí)踐中的創(chuàng)新技術(shù)及其應(yīng)用效果分析等內(nèi)容,附有大量的圖表和工程實(shí) 例。研究內(nèi)容主要為國家自然科學(xué)基金項(xiàng)目、澳大利亞政府奮進(jìn)研究學(xué)者項(xiàng)目、河北省自然科學(xué)基金項(xiàng)目, 以及大量國內(nèi)外現(xiàn)場實(shí)踐項(xiàng)目提煉出來的相關(guān)科學(xué)問題和技術(shù)難題。本書內(nèi)容豐富、新穎、實(shí)用,可為隧道 工程、邊坡工程、采礦工程及巖石力學(xué)專業(yè)的科研工作者、高等院校師生以及現(xiàn)場工程技術(shù)人員提供參考和 借鑒。

巖體錨固與巖土工程新進(jìn)展 內(nèi)容簡介

巖體錨固與巖土工程新進(jìn)展總結(jié)了近年來關(guān)于巖石力學(xué)基礎(chǔ)理論、分析方法以及創(chuàng)新技術(shù)和工程應(yīng)用的*研究成果。

巖體錨固與巖土工程新進(jìn)展 目錄

Preface i Acknowledgments ii 1. Rock Testing 1. Instability Characteristics of a Single Sandstone Plate 1 2. Instability Characteristics of Double-Layer Rock Plates 11 3. Rupture and Energy Analysis of Double-Layer Rock Plates 18 4. Double-Layer Rock Plates With Both Ends Fixed Condition 27 5. Viscoelastic Attenuation Properties for Different Rocks 32 6. Cutting Fracture Characteristics of Sandstone 39 7. Energy Dissipation Characteristics of Sandstone Cutting 46 8. Fracture Properties on the Compressive Failure of Rock 52 References 58 Further Reading 60 2. Rockbolting 1. Mathematical Derivation of Slip Face Angle 61 2. A Mechanical Model for Cone Bolts 73 3. Effect of Introducing Aggregate Into Grouting Material 86 4. Optimizing Selection of Rebar Bolts 90 5. Poisson’s Ratio Effect in Push and Pull Testing 102 6. Study on Rockbolting Failure Modes 112 7. Steel Bolt Profile Influence on Bolt Load Transfer 128 8. Tensile Stress Mobilization Along a Rockbolt 141 References 146 Further Reading 149 3. Grouted Cable 1. Load Transfer Mechanism of Fully Grouted Cable 151 2. Theoretical Analysis of Load Transfer Mechanics 159 3. Impacting Factors on the Design for Cables 168 4. Mechanical Properties of Cementitious Grout 177 5. Anchorage Performance Test of Cables 187 6. Axial Performance of a Fully Grouted Modified Cable 196 7. Sample Dimensions on Assessing Cable Loading Capacity 203 References 212 Further Reading 215 4. Tunnel Engineering 1. Construction Optimization for a Soft Rock Tunnel 217 2. Water Inrush Characteristics of Roadway Excavation 225 3. Lining Reliability Analysis for Hydraulic Tunnel 233 4. Disturbance Deformation of an Existing Tunnel 239 5. Energy Dissipation Characteristics of a Circular Tunnel 250 6. Pressure-Arch Evolution and Control Technique 256 7. Skewed Effect of the Pressure-Arch in a Double-Arch Tunnel 266 References 276 Further Reading 279 5. Slope Engineering 1. Three-Dimensional Deformation Effect and Optimal Excavated Design 281 2. Stability Analysis of Three-Dimensional Slope Engineering 289 v Biography iii 3. Fracture Process Analysis of Key Strata in the Slope 295 4. Parameters Optimization of the Slope Engineering 303 5. Key Technologies in Cut-and-Cover Tunnels in Slope Engineering 310 6. Potential Risk Analysis of a Tailings Dam 319 7. A New Landslide Forecast Method 326 References 331 Further Reading 333 6. Mining Geomechanics 1. Analytical Analysis of Roof-Bending Deflection 335 2. Analytical Solution of the Roof Safe Thickness 345 3. Catastrophe Characteristics of the Stratified Rock Roof 350 4. Pressure-Arch Analysis in Coal Mining Field 357 5. Analysis of Accumulated Damage Effects on the Roof 363 6. Tunnel and Bridge Crossing the Mined-Out Regions 372 7. Pressure-Arch Analysis in Horizontal Stratified Rocks 381 8. Pressure-Arch in a Fully Mechanized Mining Field 392 References 400 Further Reading 402 Index 403
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