Fundamentals of Building Performance Simulation

Fundamentals of Building Performance Simulation

Beausoleil-Morrison, Ian

Taylor & Francis Ltd

04/2025

432

Mole

9781032724782

Pré-lançamento - envio 15 a 20 dias após a sua edição

Descrição não disponível.
Foreword

Preface

Nomenclature

Part 1 Prelude

Chapter 1 Introduction to BPS

Part II Building Interior

Chapter 2 Enery and mass transfers within buildings

Chapter 3 Solar energy absorption by internal surfaces

Chapter 4 Convection heat transfer at internal surfaces

Chapter 5 Longwave radiation exchange between internal surfaces

Chapter 6 Internal heat and moisture sources

Chapter 7 Internal airflow

Part III Exterior environment

Chapter 8 Energy balances at external surfaces & weather

Chapter 9 Solar energy absorption by external surfaces

Chapter 10 Convection heat transfer at external surfaces

Chapter 11 Longwave radiation exchange at external surfaces

Chapter 12 Heat transfer to the ground

Part IV Building envelope

Chapter 13 Heat transfer in opaque assemblies

Chapter 14 Heat transfer in transparent assemblies

Chapter 15 Air infiltration and natural ventilation

Part V HVAC

Chapter 16 Options for representing HVAC systems

Chapter 17 Explicitly representing HVAC systems

Chapter 18 Energy conversion and storage components

Chapter 19 Components within air distribution systems

Chapter 20 Terminal devices

Part VI Finale

Chapter 21 Culminating trials

Chapter 22 Free Floating Trial

Chapter 23 Space Heating Trial

Chapter 24 HVAC Trial

Chapter 25 Next Steps

References
Este título pertence ao(s) assunto(s) indicados(s). Para ver outros títulos clique no assunto desejado.
Building Performance Simulation;Building Performance Analysis;Building Physics;Building Science;Building Energy Informatics;Building Envelope;HVAC;Energy efficiency;Low carbon building;Zero carbon building;Building Energy Performance;Energy Modelling;Retrofitting;Sustainable construction;Sustainable architecture;Building Information Modelling;BIM;Quantitative methods in construction;Environmental engineering;Civil Engineering;Mechanical Engineering;Construction Engineering;Architectural Engineering;IBPSA;Convection coefficients;Solar irradiance;Transient conduction;Heat transfer;Heat transfer modelling;Direct beam radiation;Diffuse sky radiation;Longwave radiation exchange;modelling tools;simulation predictions;innovative pedagogical approach;classroom learning