Development of an apparatus for visualizing natural ventilation airflow due to wind and buoyancy (Softcopy is also available) (Record no. 72520)
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fixed length control field | 02288nam a2200181Ia 4500 |
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION | |
fixed length control field | 240829s9999 xx 000 0 und d |
082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER | |
Classification number | MBEP TH-0110 |
Item number | SAM |
100 ## - MAIN ENTRY--PERSONAL NAME | |
Personal name | Sam, Manna Elizabeth (PBE22430) |
245 #0 - TITLE STATEMENT | |
Title | Development of an apparatus for visualizing natural ventilation airflow due to wind and buoyancy (Softcopy is also available) |
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT) | |
Date of publication, distribution, etc | 2024 |
300 ## - PHYSICAL DESCRIPTION | |
Extent | xix,36p. |
505 ## - FORMATTED CONTENTS NOTE | |
Formatted contents note | TABLE OF CONTENTS <br/>ABSTRACT iii <br/>UNDERTAKING vii <br/>CERTIFICATE ix <br/>ACKNOWLEDGEMENTS xi <br/>ABBREVIATIONS xii <br/>TABLE OF CONTENTS xiv <br/>LIST OF FIGURES xvi <br/>LIST OF TABLES xviii <br/>CHAPTER-1: INTRODUCTION 1 <br/>1.1 Background 1 <br/>1.2 Significance 2 <br/>1.3 Aim 3 <br/>1.4 Research Questions 3 <br/>1.5 Objectives and limitations 3 <br/>1.6 Scope and Limitations 3 <br/>CHAPTER-2: LITERATURE REVIEW 4 <br/>2.1 Available methods 5 <br/>2.1.1 Choosing Between Water-table and Wind Tunnel: 8 <br/>2.2 Different airflow and distribution patterns and ventilation systems 10 <br/>2.2.1 Airflow principles in consideration 10 <br/>2.2.2 Existing apparatus and studies using different mediums of flow 10 <br/>2.2.3 Sizing the apparatus 11 <br/>2.2.4 Selecting the object of study 13 <br/>2.2.5 Selecting the medium of visualization 13 <br/>2.2.6 Selecting the mode of visualization 14 <br/>2.3 Methodology 14 <br/>CHAPTER-3: METHODOLOGY 15 <br/>3.1 Building typology under consideration for study 15 <br/>3.2 Prototype development and pilot experiment 16 <br/>3.2.1 Sizing and Scaling of the prototype apparatus 16 <br/>3.2.2 Selection of the material <br/>3.2.3 Pilot experiment: Evolution of design 19 <br/>Limitations: 22 <br/>3.3 Final design of the apparatus 22 <br/>3.3.1 Experiments with different geometries 24 <br/>3.3.2 How to conduct the test 25 <br/>CHAPTER-4: RESULTS AND DISCUSSION 27 <br/>4.1 Single sided ventilation flow pattern (SS) 27 <br/>4.2 Adjacent side ventilation flow pattern (AS) 28 <br/>4.3 Cross flow ventilation pattern 29 <br/>4.4 Parametric Study 30 <br/>4.5 CFD Simulation for basic three geometries 31 <br/>CHAPTER-5: CONCLUSION 32 <br/>5.1 Way Forward 32 <br/>APPENDIX A 33 <br/>References 35 <br/> |
700 ## - ADDED ENTRY--PERSONAL NAME | |
Personal name | Damle, Rashmin (Guide) |
890 ## - Country | |
Country | India |
891 ## - Topic | |
Topic | 2022 Batch |
891 ## - Topic | |
Topic | FT-PG |
891 ## - Topic | |
Topic | Masters of Technology in Building Energy Performance |
Withdrawn status | Lost status | Damaged status | Not for loan | Collection code | Withdrawn status | Home library | Current library | Date acquired | Source of acquisition | Full call number | Barcode | Date last seen | Price effective from | Koha item type |
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Not For Loan | Faculty of Technology | CEPT Library | CEPT Library | 29/08/2024 | Faculty of Technology | MBEP TH-0110 SAM | 026651 | 29/08/2024 | 29/08/2024 | Thesis |