Introduction to Design for Civil Engineers
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- 서양도서 > 예술/건축 > 건축 > 일반
- 서양도서 > 과학/기술 > 교양과학
- 서양도서 > 과학/기술 > 도시공학
- 서양도서 > 과학/기술 > 환경공학
- 서양도서 > 과학/기술 > 기계공학
Providing entry-level students of civil engineering with the necessary background to the terminology used in design, this concise handbook aims to offer a clear and qualitative treatment of the subject area with little mathematics.
Andrew Beeby is Professor of Structural Design at the University of Leeds. Before joining the department he was Director of Design and Construction for the British Cement Association. Involved in drafting codes of practice for structural design, both in UK and within Europe and using knowledge to improve design methods, he now uses his expertise to explain the complexities of structural behaviour to his students. Professor Narayanan is Director at Cadogan Tietz and Visiting Professor on "Principles of Design" at the University of Leeds. Closely involved in day to day design problems and in giving expert evidence in building litigation, his wide experience makes him well equiped to write for young engineers.
An Introduction to Design for Civil Engineersis a concise book that provides the reader with the necessary background on terminology used in design. This book will be a useful aid for entry-level students of civil engineering and related disciplines such as structural engineering, building engineering and architecture. It will also prove beneficial for newly qualified professionals and others who want a concise guide to everyday design terminology.
An Introduction to Design for Civil Engineersis a concise book that provides the reader with the necessary background on terminology used in design. With this book as a guide, entry-level students of civil engineering will better understand from the outset lectures on detailed subject areas. Drawing on a wealth of experience, the authors present a largely qualitative treatment of the subject matter with little mathematics. Descriptions are amplified with numerous illustrations. This book will be a useful aid for entry-level students of civil engineering and related disciplines such as structural engineering, building engineering and architecture. It will also prove beneficial for newly qualified professionals and others who want a concise guide to everyday design technology.
'Students beginning their study of structural engineering will benefit from a comprehensive reading of the book'. Choice
This is a concise book that provides the reader with the necessary background on terminology used in design. It is largely a qualitative treatment of the subject matter with little mathematics.
Preface. 1. What is Design? 2. Types of Failure. 3. The Elements of a Structure and How They Function. 3.1 Introduction. 3.2 Structures and Members. 3.3 Stress and Strain. 3.4 How a Beam Works 3.5.1 Galileo's analysis 3.5.2 Internal and external moments 3.5.3 A simply supported beam 3.5.4 Where Galileo was wrong 3.5.5 Bending moment diagrams 3.5.6 Shear forces and shear force diagrams. 3.6 Stresses and Strains in Beams 3.6.1 The distribution of strain over the depth of a section 3.6.2 Derivation of the stresses from the strains. 3.7 Efficiency of Sections Subjected to Bending 3.7.1 Improving the efficiency by changing the height to depth ratio of a rectangluar section 3.7.2 Improving economy by changing the form of the section 3.7.3 Providing one of the forces externally. 3.8 Columns or Struts. 3.9 Tension Members. 3.10 Continuity 3.10.1 General 3.10.2 Connection together the spans of a beam 3.10.3 Difficulties with use of equilibrium 3.10.4 actual behaviour of continuous structures 3.10.5 Analysis methods. 4. Structural Form and Materials 4.1 Introduction. 4.2 Stone. 4.3 Bricks. 4.4 Timber. 4.5 Iron and Steel. 4.6 Reinforced Concrete. 4.7 Prestressed Concrete. 4.8 Discussion. 4.9 Further Loading. 5. Loads and Loading. 5.1 Introduction. 5.2 Sources of Loads and Classification. 5.3 Statistical Concepts Used in Conjunction with Loading. 5.4 Discussion of Some Types of Loads 5.4.1 Floor loads 5.4.2 Roof loads 5.4.3 Horizontal loads on handrails, barriers etc. 5.4.4 Wind loads 5.4.5 Earthquake loading 5.4.6 Highway loading. 6. Material Properties. 6.1 Introduction. 6.2 Reinforced Concrete 6.2.1 General background 6.2.2 Constituent materials of concrete 6.2.3 Reinforcement 6.3.4 Durability 6.2.5 Fire performance. 6.3 Structural Steel 6.3.1 General background 6.3.2 Properties 6.3.3 Durability 6.3.4 Fire performance. 6.4 Masonry 6.4.1 General background 6.4.2 Exclusion of moisture 6.4.3 Durability 6.4.4 Movement in masonry 6.4.5 Fire performance 6.5 Structural Timber 6.5.1 Introduction 6.5.2 Materials 6.5.3 Durability 6.3.4 Fire performance. 7. Structural Safety, Limit State Design and Codes of Practice. 7.1 Introduction: what to we mean by 'Safety'? 7.2 Sources of Uncertainty 7.2.1 Uncertainty about loading 7.2.2 Uncertainty about material strenghts 7.2.3 Uncertainty about structural dimensions 7.2.4 Uncertainty about accuracy of calculations 7.2.5 Effect of time. 7.3 Means of Providing Safety Taking Account of Uncertainty 7.3.1 Early developments 7.3.2 The permissable stress approach 7.3.3 Developments to the permissable stress aproach 7.3.4 The partial safety factor method 7.3.5 Probabilistic design. 7.4 Examples of Use of Safety Formats. 7.5 Accidents and Robustness. 7.6 Building Regulations and Design Codes 7.6.1 Building and the law - historical developments 7.6.2 The professions as a means of control 7.6.3 The development of Codes of practice 7.6.4 Limit state design 7.6.5 Debates about the form, purpose and content of codes 7.6.6 Standards 7.6.7 Summary 7.6.8 Eurocodes 7.7 References. 8. The Design Process. 8.1 Introduction. 8.2 Factors Governing Engineers' Task 8.3 Project Stages 8.4 Concluding Remarks. 9. Designer in a Changing World. 9.1 Introduction. 9.2 Continuing Professional Education/Development (CPE/CPD) 9.2.1 Why CPE/CPD? 9.2.2 Types of CPE/CPD 9.3 Sustainability Issues 9.3.1 The case for consideration of sustainability 9.3.2 Engineering a sustainable development 9.3.3 Concluding remarks. 9.4 Learning from Failures. 9.4.1 Introduction 9.4.2 Causes of failure 9.4.3 Avoidance of failure.
Provides the reader with the necessary background on terminology used in design. A useful aid for students of civil engineering and disciplines such as structural engineering, building engineering and architecture. It will also prove beneficial for newly qualified professionals and others who want a concise guide to everyday design terminology.
작가정보
목차
- 1. What is Design? 2. Types of Failure. 3. The Elements of a Structure and How They Function. 4. Structural Form and Materials. 5. Loads and Loading. 6. Material Properties. 7. Structural Safety, Limit State Design and Codes of Practice. 8. The Design Process. 9. Designer in a Changing World.
기본정보
ISBN | 9780419235507 ( 0419235507 ) |
---|---|
발행(출시)일자 | 2000년 09월 28일 |
쪽수 | 204쪽 |
크기 |
158 * 233
* 10
mm
/ 367 g
|
총권수 | 1권 |
언어 | 영어 |
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