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當(dāng)前位置: 首頁(yè)出版圖書(shū)科學(xué)技術(shù)工業(yè)技術(shù)建筑科學(xué)土力學(xué)、地基基礎(chǔ)工程SOILMECHANICS(英文版土力學(xué)教材)

SOILMECHANICS(英文版土力學(xué)教材)

SOILMECHANICS(英文版土力學(xué)教材)

定 價(jià):¥26.00

作 者: 施建勇、等
出版社: 人民交通出版社
叢編項(xiàng):
標(biāo) 簽: 科普 英文版 英語(yǔ)讀物 英語(yǔ)與其他外語(yǔ)

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ISBN: 9787114050534 出版時(shí)間: 2004-07-01 包裝: 平裝
開(kāi)本: 16 頁(yè)數(shù): 392 字?jǐn)?shù):  

內(nèi)容簡(jiǎn)介

  教育部倡導(dǎo)在具備條件的高等院校中進(jìn)行雙語(yǔ)教學(xué),許多院校都做了有益的探索和嘗試。有些院校直接采用外文原版書(shū)進(jìn)行教學(xué),反饋意見(jiàn)各不相同。由于我國(guó)土木工程專業(yè)高等教育模式與國(guó)外存在較大差別,編制適合國(guó)內(nèi)學(xué)生特點(diǎn)的本土英文版教材,成為國(guó)內(nèi)院校的迫切需要?;诖?,河海大學(xué)土木工程學(xué)院的幾位教授在國(guó)內(nèi)土力學(xué)教材的基礎(chǔ)上,參照國(guó)外英文版圖書(shū)的編寫(xiě)方式和風(fēng)格,同時(shí)考慮國(guó)內(nèi)學(xué)生的使用特點(diǎn),精心編譯而成此書(shū)。本書(shū)共分八章:第一章 土體的物理性質(zhì)和巖土工程的分類;第二章 滲流;第三章 地基中的應(yīng)力;第四章 地基的壓縮和固結(jié);第五章 土的抗剪強(qiáng)度;第六章 土壓力理論;第七章 邊坡穩(wěn)定分析;第八章 地基承載力。每章后均附有習(xí)題、符號(hào)說(shuō)明和部分專業(yè)英語(yǔ)詞匯的漢譯,供學(xué)生在使用本書(shū)時(shí)練習(xí)、參照。本書(shū)為英文。本書(shū)可供高等學(xué)校土木工程專業(yè)及相關(guān)專業(yè)在開(kāi)設(shè)土力學(xué)雙語(yǔ)教學(xué)課程時(shí)使用。

作者簡(jiǎn)介

暫缺《SOILMECHANICS(英文版土力學(xué)教材)》作者簡(jiǎn)介

圖書(shū)目錄

CHAFFER 1 PHYSICAL PROPERTIES AND ENGINEERING CLASSIFICATION OF SOIL
 1.1 Formation of Soil
 1.2 Components of Soil
1.2.1 Solid Phase
1.2.2 Liquid Phase
1.2.3 Vapor Phase
1.3 Soil Fabric
1.3.1 Interaction between Soil Particles
1.3.2 Soil Fabric
1.4 Physical Features and Indexes of Soii
1.4.1 Basic Physical Indexes
1.4.2 Calculated Physical Indexes
1.4.3 Conversion between Physical Indexes
1.5 Relative Density of Cohesionless Soil, Consistency of Cohesive Soil and Soil Compaction
1.5.1 Relative Density of Cohesionless Soil
1.5.2 Consistency of Cohesive Soil
1.5.3 Soil Compaction
1.6 Soil Classification
CI-tAFFER 2 WATER FLOW THROUGH SOIL
2.1 Introduction
2.2 Driving Potential——Total Head
2.3 Darcy's Law
2.3.1 Darcy's Law
2.3.2 Validity of Darcy's Law
2.4 Determination of the Coefficient of Permeability
2.4.1 Empirical Relationships for k
2.4.2 Determination of k in the Laboratory
2.4.3 Pumping Test to Determine k in the Field
2.4.4 The Coefficient of Permeability of Soil Layers
2.5 Two-Dimensional Flow of Water through Soil and Flow Net
2.5.1 Laplace's Equation for Two-Dimensional Steady Flow
2.5.2 Flow Net
2.6 Effective Stress and Pore Water Pressure in soil
2.6.1 The Principle of Effective Stress
2.6.2 Effective Stresses due to Hydrostatic Stress Fields
2.6.3 Effects of Seepage
2.7 Seepage Force and Critical Hydraulic Gradient
2.7.1 Seepage Force
2.7.2 Heaving, Boiling, and Piping
2.7.3 Critical Hydraulic Gradient
CHAPTER 3 STRESSES IN SOIL
3.1 Introduction
3.2 Effective Overburden Pressure in the Ground
3.3 Contact Pressure between the Foundation and the Ground
3.3.1 Contact Pressure due to Vertical Centric Load
3.3.2 Contact Pressure due to Vertical Eccentric Load
3.3.3 Contact Pressure due to Inclined Eccentric Load
3.4 Stress Increase in the Ground
3.4.1 Stress Increase in Spatial Problems
3.4.2 Stress Increase in Plane Problems
3.4.3 Effective Overburden Pressure of Embankment and Contact Pressure between Embankment and Ground
CHAPTER 4 COMPRESSION AND CONSOLIDATION OF SOIL
4.1 Introduction
4.2 Soil Compressibility Characteristics
  ……
CHAPTER 5 SHEAR STRENGTH OF SOIL
CHAPTER 6 EARTH PRESSURE ON RETAINING STRUCTURES
CHAPTER 7 SLOPE STABILITY
CHAPTER 8 BEARING CAPACITY OF FOUNDATIONS
REEERENCES

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