Natural ventilation of buildings : theory, measurement and design (Record no. 47822)

MARC details
000 -LEADER
fixed length control field 04913 a2200169 4500
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9780470660355
082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number 697.92
Item number ETH
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Etheridge, David
245 ## - TITLE STATEMENT
Title Natural ventilation of buildings : theory, measurement and design
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc West Sussex
Name of publisher, distributor, etc John Wiley & Sons Ltd.
Date of publication, distribution, etc 2012
300 ## - PHYSICAL DESCRIPTION
Extent xxv,428p.
505 ## - FORMATTED CONTENTS NOTE
Formatted contents note CONTENTS<br/>Chapter 1. INTRODUCTION AND OVERVIEW OF NATURAL VENTILATION DESIGN.<br/>1.1 Aims and scope of the book.<br/>1.2 Natural ventilation in context.<br/>2.2 Advantages and disadvantages of natural ventilation.<br/>1.3 Overview of design.<br/>1.4 Notes on references.<br/><br/>Chapter 2. PHYSICAL PROCESSES IN NATURAL VENTILATION.<br/>2.1 Introduction.<br/>2.2 The effect of gravity on ventilation flows.<br/>2.3 Types of flow encountered in ventilation.<br/>2.4 Fluid mechanics – other important concepts and equations.<br/>2.5 Steady and unsteady ventilation.<br/>2.6 Flow through a sudden expansion.<br/>2.7 Dimensional analysis.<br/>2.8 Heat transfer between air and envelope.<br/>2.9 Definitions relating to ventilation rate.<br/>2.10 Errors and uncertainties.<br/>2.11 Mathematical models.<br/>2.12 Boundary conditions.<br/>Bibliography.<br/>References.<br/><br/>Chapter 3. STEADY FLOW CHARACTERISTICS OF OPENINGS.<br/>3.1 Introduction.<br/>3.2 Classification of openings.<br/>3.3 Still-air discharge coefficient.<br/>3.4 Installation effects on Cd.<br/>3.5 Openings in combination.<br/>3.6 Determination of Cd.<br/>3.7 Uncertainties in design calculations.<br/>3.8 Other definitions of discharge coefficient.<br/>3.9 Large (and very large) openings.<br/>3.10 Relevance to design.<br/>References.<br/><br/>CHAPTER 4. STEADY ENVELOPE FLOW MODELS.<br/>4.1 Introduction.<br/>4.2 Basic theory<br/>4.3 Single- and multi-cell models.<br/>4.4 Simple analytic solutions.<br/>4.5 Non-uniform density.<br/>4.6 Turbulent diffusion.<br/>4.7 Large openings.<br/>4.8 Adventitious openings.<br/>4.9 Explicit method of solution.<br/>4.10 Uncertainties in envelope flow models.<br/>4.11 Combined envelope and thermal models.<br/>4.12 Models for very large openings.<br/>4.13 Relevance to design.<br/>References.<br/><br/>CHAPTER 5. UNSTEADY ENVELOPE FLOW MODELS.<br/>5.1 Introduction.<br/>5.2 Flow equation.<br/>5.3 Pressure difference across openings.<br/>5.4 Mass conservation equation.<br/>5.5 Envelope flow models.<br/>5.6 Comparisons with measurement.<br/>5.7 Mean flow rates.<br/>5.8 Instantaneous flow rates.<br/>5.9 Unsteady flow models in design.<br/>5.10 Relevance to design.<br/>References.<br/><br/>Chapter 6. INTERNAL AIR MOTION, ZONAL MODELS AND STRATIFICATION.<br/>6.1 Introduction.<br/>6.2 Governing equations.<br/>6.3 Primary and secondary flows.<br/>6.4 Zonal models.<br/>6.5 Coarse-grid CFD.<br/>6.6 Integrated zonal and envelope models.<br/>6.7 Stratification.<br/>6.8 Relevance to design<br/>References.<br/><br/>Chapter 7. CONTAMINANT TRANSPORT AND INDOOR AIR QUALITY.<br/>7.1 Introduction.<br/>7.2 Concentration at a point.<br/>7.3 Conservation equations for bounded spaces, envelope models.<br/>7.4 Conservation equations for large unbounded volumes as used in zonal models.<br/>7.5 Analytic relations for concentration at a point.<br/>7.6 Analytic relations for uniform concentration.<br/>7.7 Analytic relations for non-uniform concentration.<br/>7.8 Calculations with CFD, coarse-grid CFD and zonal models.<br/>7.9 Definitions relating to contaminant removal.<br/>7.10 Relevance to design.<br/>References.<br/><br/>Chapter 8. AGE OF AIR AND VENTILATION EFFICIENCY.<br/>8.1 Introduction.<br/>8.2 Theoretical modelling of age properties at a point.<br/>8.3 Zonal models.<br/>8.4 Ventilation efficiency.<br/>8.5 Analytic relationships.<br/>8.6 Experimental determination of age (using a tracer).<br/>8.7 Unsteady age distributions.<br/>8.8 Relevance to design.<br/>References.<br/><br/>CHAPTER 9. COMPUTATIONAL FLUID DYNAMICS AND ITS APPLICATIONS.<br/>9.1 Introduction.<br/>9.2 Basics of CFD.<br/>9.3 Important modelling issues.<br/>9.4 Calculation of external wind flow.<br/>9.5 Calculation of internal flows<br/>9.6 Whole-field calculations.<br/>9.7 Other applications.<br/>9.8 Relevance to design.<br/>References.<br/><br/>Chapter 10. SCALE MODELLING.<br/>10.1 Introduction.<br/>10.2 Requirements for similarity.<br/>10.3 Wind alone.<br/>10.4 Buoyancy alone.<br/>10.5 Wind and buoyancy combined.<br/>10.6 Use of water as the modelling fluid.<br/>10.7 Relevance to design.<br/>References.<br/><br/>Chapter 11. FULL-SCALE MEASUREMENTS.<br/>11.1 Introduction.<br/>11.2 Laboratory measurements of Cd and effective area.<br/>11.3 Measurement of adventitious leakage using steady pressurisation.<br/>11.4 Unsteady techniques for measurement of low-pressure leakage.<br/>11.5 Field measurements of ventilation rates.<br/>11.6 Other measurements.<br/>11.7 Relevance to design.<br/>References.<br/><br/>Chapter 12. DESIGN PROCEDURES.<br/>12.1 Introduction.<br/>12.2 Feasibility of natural ventilation (Stage 1).<br/>12.3 Ventilation strategies (Stage 2).<br/>12.4 Envelope design (Stage 3).<br/>12.5 Internal environment (Stage 4).<br/>12.6 Data specification.<br/>12.7 Low-energy cooling systems.<br/>12.8 Control systems.<br/>12.9 Commissioning (Stage 5).<br/>12.10 Concluding remarks.<br/>References.
600 ## - SUBJECT ADDED ENTRY--PERSONAL NAME
9 (RLIN) 57848
890 ## - Country
Country UK
891 ## - Topic
Topic FT
942 ## - ADDED ENTRY ELEMENTS (KOHA)
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    Dewey Decimal Classification     Faculty of Technology   CEPT Library CEPT Library 27/02/2018 amazon.in 6484.00 7 10 697.92 ETH 018826 12/11/2022 02/11/2022 6484.00 12/02/2018 Book
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