顯式和半隱式計算方法在岩土力學中的應用 (英文版) 馬宗源 薛熠 9787523214435 【台灣高等教育出版社】

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書名:顯式和半隱式計算方法在岩土力學中的應用 (英文版)
ISBN:9787523214435
出版社:世界圖書出版有限公司
著編譯者:馬宗源 薛熠
頁數:306
所在地:中國大陸 *此為代購商品
書號:1677935
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內容簡介

本書重點介紹了顯式和半隱式計算方法(包括顯式有限元、顯式有限差分和有限體積法等)及其在岩土力學中的應用。內容包括理論概念和工程實踐,且更強調後者,主要涵蓋數學建模,計算程序及其實現,演算法驗證及工程案例的計算分析等主題。本書各個章節均詳細探討各種應用案例,包括邊坡或滑坡的穩定性分析、混凝土結構的熱-力分析、泥石流流場分析及深部岩體多場耦合分析等。本書適合有興趣學習及嘗試解決複雜岩土力學問題(如非線性,動力學或多場耦合問題)的人群,尤其是岩土工程、地質、交通運輸或能源開發等領域的研究人員、工程師和研究生使用。

作者簡介

馬宗源,博士,貴州交通職業大學副教授。2011年獲西安交通大學固體力學專業博士學位,美國科羅拉多礦業學院訪問學者(2018-2019年),美國土木工程師學會(ASCE)和國際土力學與岩土工程學會(ISSMG)會員。研究方向為計算地質力學、岩土材料本構關係及岩土工程抗震分析。

目錄

1 Introduction
1 1 Explicit numerical method
1 2 Explicit finite different method
1 2 1 Basic algorithm
1 2 2 Governing equation
1 2 3 Constitutive equation
1 3 Explicit finite element method
1 4 Strength theory of geomaterials
2 Application of the Explicit Numerical Method in Slope Stability
2 1 Application of EFDM to Slope Static Stability
2 1 1 Associative and non-associative flow rule
2 1 2 Strength parameter and slope geometry
2 2 Application of EFDM to slope seepage flow stability
2 2 1 Theory of saturated seepage flow
2 2 2 Slope stability due to saturated seepage flow
2 2 3 Slope stability due to unsaturated seepage flow
2 2 4 3D analysis of high slope stability due to saturated seepage flow
2 2 5 Application of EFDM to metro station pit dewatering
2 3 Application of EFEM to dynamic stability problem of slope
2 3 1 Seismic stability of slope
2 3 2 Seismic stability of earth-filled dam slope
2 3 3 Slope instability induced by underground mining
2 4 Earthquake-induced landslide
2 4 1 Two-dimensional analysis
2 5 Summary
3 Application of the Explicit Numerical Method in Foundation Problems
3 1 Application of EFDM to bearing capacity of footing
3 1 1 General problems of bearing capacity of footing
3 1 2 Bearing capacity of strip footing considering influence of O2
3 1 3 Bearing capacity of soft rock beneath footing
3 2 Application of DEM in foundation treatment
3 2 1 Dynamic compaction of gravel soil ground
3 2 2 Dynamic compaction on bridge side embankment
3 3 Summary
4 Application of the Explicit Numerical Method in Rock Dynamics
4 1 Theory of rock dynamics
4 2 Deeply buried tunnel with underground impact Dressure
4 3 Deeply buried rock stratum perforated by a rigid projectjle
4 4 Summary
5 Thermal-Mechanical Analysis of Concrete Structure
5 1 Theory of concrete thermal-mechanical Analysis
5 2 Thermal—mechanical parameters of concrete
5 3 Thermal parameters of concrete
5 4 Calculation theory of the heat of hydration
5 4 1 Heat of hydration
5 4 2 Adiabatic temperature rise
5 4 3 Adiabatic temperature rise exDeriment
5 5 Thermal—mechanical Analysis 0f Concrete Gravitv Arch Dam
5 6 Thermal—mechanical analysis of concrete structure for metro stations
5 6 1 Engineering background
5 6 2 Calculation and analysis
5 6 3 Results and discussion
5 7 Summary
6 Application of CFD in Debris Flow Disaster
6 1Analysis6 1 Theory and method
6 1 1 Theory for computational fluid dynamics
6 1 2 Rheological properties of non—Newtonian fluids
6 2 Engineering background
6 3 Three dimensional numerical simulation of debris flow
6 4 Summary
7 1 Theory and method
7 1 1 Description of the mathematical model
7 1 2 Gas flow in coal fractures
7 1 3 Gas diffusion in coal matrix
7 1 4 Mechanical equilibrium equation
7 1 5 Damage evolution equation
7 1 6 Coal permeability and porosity
7 1 7 Characterization of coal heterogeneity
7 1 8 Principles of energy method for coal mass
7 1 9 Numerical implementation
7 2 Examination of the numerical scheme
7 2 1 Numerical verification
7 2 2 Experimental verification
7 2 3 Numerical results and parameter analysis
7 2 4 Permeability and gas pressure evolution around borehole
7 2 5 Effect of sorption—induced swelling/shrinkage
7 2 6 Effect of sorption time and Klinkenberg effect
7 2 7 Effect of buried depth coal strength and gas pressure
7 2 8 Analysis of energy evolution characteristics of coal mass
7 3 Gas fracturing Theory and Control Equation
7 3 1 Gas fracturing model of coal seams
7 3 2 Methane diffusion equation
7 3 3 Gas equilibrium equation
7 3 4 Evolution equation of coal permeability
7 3
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