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巖石隧道離散單元模擬技術(shù)

巖石隧道離散單元模擬技術(shù)

出版社:西南交通大學(xué)出版社出版時(shí)間:2015-06-01
開本: 26cm 頁數(shù): 182
中 圖 價(jià):¥36.0(7.5折) 定價(jià)  ¥48.0 登錄后可看到會(huì)員價(jià)
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巖石隧道離散單元模擬技術(shù) 版權(quán)信息

巖石隧道離散單元模擬技術(shù) 本書特色

this book can be a text book for college students or a reference book for modelers and engineers. there are 8 chapters in this book. chapter 1 is a brief introduction, followed by the mechanical and dynamic behavior of rock masses in chapter 2. in chapter 3, numerical modeling of jointed rock masses including the discrete element code (udec) is reviewed. several cases in applying udec for static problem are presented in chapter 4, while cases in applying udec for rock dynamic problem are given in chapter 5. in chapter 6, the application of udec in modeling blast wave transmitting in rock tunnels is investigated. a new technology to simulate the whole process of blasting and wave propagation in rock masses by coupling udec and autodyn-2d is proposed. chapter 7 presents an application of 3dec for static modeling, while chapter 8 discusses some fundamental issues and verification of 3dec on modeling wave propagation in jointed rock masses.

巖石隧道離散單元模擬技術(shù) 內(nèi)容簡介

本書是有關(guān)巖石隧道離散單元模擬技術(shù)的專業(yè)教材。本書在闡述了巖石力學(xué)和動(dòng)力學(xué)特性的基礎(chǔ)上, 系統(tǒng)介紹了巖石隧道靜動(dòng)態(tài)問題 (隧道開挖、波傳播和爆炸荷載作用) 的離散單元模擬技術(shù)。

巖石隧道離散單元模擬技術(shù) 目錄

Chapter 1 Introduction1.1 Rock and Its Mechanical Behavior1.2 Dynamic Loading and Dynamic Behavior of Rock Masses1.3 Numerical Modeling in Rock Engineering1.4 Challenges in Discrete Element Modeling of Explosion ProblemsChapter 2 Mechanical and Dynamic Behavior of Rock Masses2.1 Overview of Rock Masses2.2 Mechanical Behavior of Jointed Rock Masses2.3 Dynamic Response of Jointed Rock MassesChapter 3 Discrete Element Modeling3.1 Review of Discrete Element Method3.2 Comparison Between Continuum-based Method and DEM3.3 The UDEC Code3.4 Considerations in Dynamic Modeling by Using the UDECChapter 4 Applications of UDEC for Static Problems4.1 Application of UDEC in Rock Tunnel Support Evaluation4.2 Application of UDEC in Modeling Hole-cutting in Deep Tunneling4.3 Application of UDEC on Goaf Stability Under a Desert Expressway4.4 Application of UDEC for Analysis of Large Rock DeformationChapter 5 Applications of UDEC for Rock Dynamic Problems5.1 Mesh Distortion in Dynamic Modeling5.2 Verification of UDEC in Modeling Wave Propagation Through Joints5.3 Wave Transmission Across Multiple Joint SetsChapter 6 Applications of UDEC Blast Wave Through Rock Tunnels6.1 Technology of Coupled UDEC and AUTODYN Modeling6.2 An Example of Using the Coupled Method6.3 UDEC-AUTODYN Hybrid Modeling a Field Explosion Test6.4 UDEC-AUTODYN Hybrid Modeling of a Large-Scale Underground Explosion Test6.5 Numerical Study on Tunnel Damage Subject to Blast-induced Shock Wave in Jointed Rock MassesChapter 7 3DEC Modeling of Slope Stability at Norwich Part Mine7.1 Introduction7.2 Computational Model and Rock Properties7.3 Modeling Cases and Results7.4 ConclusionsChapter 8 3DEC Modeling of Wave Propagation in Jointed Rock Masses8.1 2D Equivalence of 3D Plane Wave Propagation Across a Single Joint and a Joint Set8.2 Determination of Mesh Size8.3 Verification on 2D Equivalence of Plane Wave Propagation Across a Single Joint with 3DEC8.4 Normally Incident P- and S-wave Across a Single Joint and a Joint Set8.5 Obliquely Incident P-wave Across a Single Joint and a Joint Set8.6 A Case Study8.7 Discussion and ConclusionsReference
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