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École Polytechnique d'Architecture et d'Urbanisme - EPAU

« Le Moudjahid Hocine Ait Ahmed »

Designing in door climate. A theisis on the integration of indoor climate analysis in architectural design.

Par : Type de matériel : TexteLangue : Anglais Langue du résumé : Détails de publication : 2004Description : Critique : 1 Introduction iv1.1 Background and Problem definition 11.1.1 Architectural Design 31.1.2 Design and Indoor climate 51.2 Research Objective 101.2.1 Constraints and considerations 101.3 Research Questions 121.4 Research Method 131.5 Thesis outline 142 Indoor Climate Analysis 172.1 Indoor climate 172.2 Climate analysis 232.2.1 Introduction 232.2.2 Temperature simulation 252.2.3 Airflow simulation 292.3 Findings 363 Correlation of representation and indoor climate analysis 393.1 Introduction 393.2 Design representations 403.2.1 Design Information categories 413.3 Related research 453.3.1 Introduction 453.3.2 Integrated design support systems 463.3.3 Integrated systems review 493.3.4 Digital Building models 513.3.5 Building models review 543.4 Automated recognition of design representations 563.4.1 Introduction 563.4.2 The Meta Drawing Model 593.4.3 Meta information structure 703.5 Compiling Input for Analysis 833.5.1 Thermal analysis 833.5.2 Airflow simulation 873.5.3 The ORCA project 91iii3.6 Findings 984 Precedents in indoor climate analysis 1034.1 Introduction 1034.2 Precedents in design 1054.2.1 Introduction to Case Based Reasoning 1054.2.2 Case based reasoning in architecture 1074.2.3 Review and Discussion 1104.3 Precedents in the Meta Design Environment 1124.3.1 Introduction 1124.3.2 Precedent representation 1124.3.3 Automated recognition for precedents 1144.3.4 Indoor climate control concepts 1154.3.5 The CFD wizard 1224.4 Findings 1275 Indoor climate Visualization 1315.1 Introduction 1315.2 Rules and regulations 1325.3 Indoor climate factors 1385.3.1 Feedback criteria 1395.3.2 First order factors 1405.3.3 Second order factors 1425.3.4 Results 1445.4 Scientific Visualization 1455.4.1 Application 1455.4.2 Types 1465.4.3 Scalars 1485.4.4 Vectors 1545.4.5 Tensors 1595.4.6 Results 1605.5 Applied visualization of indoor climate 1615.5.1 Applicability 1635.5.2 Results 1635.5.3 Indoor climate visualization examples 1635.5.4 Isometric surface 1645.5.5 Streamline 1665.5.
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1 Introduction iv1.1 Background and Problem definition 11.1.1 Architectural Design 31.1.2 Design and Indoor climate 51.2 Research Objective 101.2.1 Constraints and considerations 101.3 Research Questions 121.4 Research Method 131.5 Thesis outline 142 Indoor Climate Analysis 172.1 Indoor climate 172.2 Climate analysis 232.2.1 Introduction 232.2.2 Temperature simulation 252.2.3 Airflow simulation 292.3 Findings 363 Correlation of representation and indoor climate analysis 393.1 Introduction 393.2 Design representations 403.2.1 Design Information categories 413.3 Related research 453.3.1 Introduction 453.3.2 Integrated design support systems 463.3.3 Integrated systems review 493.3.4 Digital Building models 513.3.5 Building models review 543.4 Automated recognition of design representations 563.4.1 Introduction 563.4.2 The Meta Drawing Model 593.4.3 Meta information structure 703.5 Compiling Input for Analysis 833.5.1 Thermal analysis 833.5.2 Airflow simulation 873.5.3 The ORCA project 91iii3.6 Findings 984 Precedents in indoor climate analysis 1034.1 Introduction 1034.2 Precedents in design 1054.2.1 Introduction to Case Based Reasoning 1054.2.2 Case based reasoning in architecture 1074.2.3 Review and Discussion 1104.3 Precedents in the Meta Design Environment 1124.3.1 Introduction 1124.3.2 Precedent representation 1124.3.3 Automated recognition for precedents 1144.3.4 Indoor climate control concepts 1154.3.5 The CFD wizard 1224.4 Findings 1275 Indoor climate Visualization 1315.1 Introduction 1315.2 Rules and regulations 1325.3 Indoor climate factors 1385.3.1 Feedback criteria 1395.3.2 First order factors 1405.3.3 Second order factors 1425.3.4 Results 1445.4 Scientific Visualization 1455.4.1 Application 1455.4.2 Types 1465.4.3 Scalars 1485.4.4 Vectors 1545.4.5 Tensors 1595.4.6 Results 1605.5 Applied visualization of indoor climate 1615.5.1 Applicability 1635.5.2 Results 1635.5.3 Indoor climate visualization examples 1635.5.4 Isometric surface 1645.5.5 Streamline 1665.5.

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