Technical potential of integrating evaporative cooling system with mechanical cooling system in hot and dry climate for day use office building in India (Also available on CD) (Record no. 55075)

MARC details
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008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
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082 ## - DEWEY DECIMAL CLASSIFICATION NUMBER
Classification number MBEP TH-0018
Item number PAT
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Patel, Bipinchandra K. (PT500115)
245 #0 - TITLE STATEMENT
Title Technical potential of integrating evaporative cooling system with mechanical cooling system in hot and dry climate for day use office building in India (Also available on CD)
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Date of publication, distribution, etc 2018
300 ## - PHYSICAL DESCRIPTION
Extent 94p.,CD-ROM
505 ## - FORMATTED CONTENTS NOTE
Formatted contents note CONTENTS<br/>Acknowledgements 8 <br/>Abstract 12 <br/>1 Introduction 13 <br/>1.1 Background 13 <br/>1.2 Need for study 14 <br/>1.3 Hypothesis and research questions 14 <br/>2 Literature review 15 <br/>2.1 Evaporative cooling Basics 15 <br/>2.2 Review of Evaporative cooling technologies 15 <br/>2.3 Review of Heat Recovery technology (HR) 16 <br/>2.4 Fresh air cooling: a case study 16 <br/>2.5 Probabilistic analysis of evaporative cooling potential in United Kingdom 16 <br/>2.6 Review of Hybrid cooling systems 17 <br/>2.6.1 Evaporative cooling (DEC+IEC) & Heat recovery 17 <br/>2.6.2 Hybrid system with 2-stage IEC and Mechanical cooling system 17 <br/>2.6.3 HyPak-MA – A Hydroponic packaged rooftop unit 18 <br/>2.6.4 Hybrid direct expansion with evaporative pre-cooling 18 <br/>2.7 Hybrid system efficiency 19 <br/>2.8 Summary of literature review 19 <br/>2.9 Need for this study 19 <br/>3 Methodology 20 <br/>3.1 Selection criteria and documentation of office space 20 <br/>3.1.1 Air-conditioning system details of Aditi office 20 <br/>3.2 Selection of simulation software 21 5 <br/>3.3 Simulation approach 21 <br/>3.3.1 Model Aditi office with mechanical cooling system 21 <br/>3.3.2 Model a Base Case office with ventilation system (LEV) 22 <br/>3.3.3 Modelling Base Case with mechanical cooling system (LEVC) 24 <br/>3.3.4 Modelling integrated cooling system for the Base Case 25 <br/>3.4 Comparison and analysis of the results 29 <br/>4 Simulation results, analysis and discussions 30 <br/>4.1 Simulated Cases 30 <br/>4.1.1 Establishing a Base Case 34 <br/>4.1.2 Analysis of Mechanical cooling 34 <br/>4.1.3 Analysis of evaporative cooling 36 <br/>4.1.4 Analysis for mechanical and evaporative cooling 37 <br/>4.1.5 Analysis for Heat Recovery Device (HR) 44 <br/>5 Conclusion and further study 46 <br/>5.1 Conclusion 46 <br/>5.2 Further study 47 <br/>References 48 <br/><br/>
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name Apte, Michael (Guide)
700 ## - ADDED ENTRY--PERSONAL NAME
Personal name Damle, Rashmin (Guide)
890 ## - Country
Country India
891 ## - Topic
Topic 2015 Batch
891 ## - Topic
Topic FT-PG
891 ## - Topic
Topic Masters of Technology in Building Energy Performance
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    Dewey Decimal Classification     Faculty of Technology   CEPT Library CEPT Library 08/09/2018 Faculty of Technology MBEP TH-0018 PAT 019874 08/09/2018 08/09/2018 Thesis
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