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dc.contributor.author
Michailidis, Marios
en
dc.date.accessioned
2015-06-18T09:45:38Z
dc.date.available
2015-09-27T05:57:57Z
dc.date.issued
2015-06-18
dc.identifier.uri
https://repository.ihu.edu.gr//xmlui/handle/11544/409
dc.rights
Default License
dc.title
Modeling a hybrid GSHP – PV system for a house
en
heal.type
masterThesis
heal.keyword
Dwellings--Heating and ventilation
en
heal.keyword
Dwellings--Air conditioning
en
heal.keyword
Ground source heat pump systems
en
heal.keyword
Dissertations, Academic
en
heal.language
en
heal.access
free
el
heal.license
http://creativecommons.org/licenses/by-nc/4.0
heal.recordProvider
School of Science and Technology, MSc in Energy Systems
heal.publicationDate
2013-11
heal.bibliographicCitation
Michailidis, Marios, 2013, Modeling a hybrid GSHP-PV system for a house, Master's Dissertation , International Hellenic University
en
heal.tableOfContents
CONTENTS ................................................................................................................. III ABBREVIATIONS ........................................................................................................ V NOMENCLATURE .................................................................................................... VII 1 INTRODUCTION ...................................................................................................... 1 2 LITERATURE REVIEW .......................................................................................... 3 3 METHODOLOGY ................................................................................................... 15 3.1 SIMULATION TOOLS ......................................................................................... 16 3.2 THE SIMULATED HOUSE .................................................................................. 17 3.3 SIMULATION WEATHER DATA .......................................................................... 22 3.4 SIMULATION OF GSHP .................................................................................... 23 3.4.1 Type 504b........................................................................................... 23 3.4.2 Type 557a........................................................................................... 27 3.4.3 Type 3b ............................................................................................... 34 3.4.4 Type 8 ................................................................................................. 35 3.5 SIMULATION OF HUMIDIFIER/DEHUMIDIFIER ..................................................... 36 3.5.1 Type 696b........................................................................................... 36 3.6 SIMULATION OF PV ARRAY .............................................................................. 38 3.6.1 Type 194 ............................................................................................. 38 3.6.2 Type 48a ............................................................................................. 46 4 SIMULATION RESULTS ...................................................................................... 47 4.1 HOUSE IN CLIMATIC ZONE A OF GREECE ........................................................ 48 4.2 HOUSE IN CLIMATIC ZONE B OF GREECE ........................................................ 53 4.3 HOUSE IN CLIMATIC ZONE C OF GREECE ........................................................ 59 4.4 HOUSE IN CLIMATIC ZONE D OF GREECE ........................................................ 65 5 PV ARRAY SENSITIVITY ANALYSIS ............................................................... 73 5.1 PV ARRAY IN CLIMATIC ZONE A OF GREECE ................................................... 73 -iv- 5.2 PV ARRAY IN CLIMATIC ZONE B OF GREECE ................................................... 75 5.3 PV ARRAY IN CLIMATIC ZONE C OF GREECE .................................................. 77 5.4 PV ARRAY IN CLIMATIC ZONE D OF GREECE .................................................. 79 6 PRE-FEASIBILITY STUDY ................................................................................. 83 6.1 COST ANALYSIS ............................................................................................... 83 6.2 FINANCIAL ANALYSIS ....................................................................................... 85 7 CONCLUSIONS .................................................................................................... 91 BIBLIOGRAPHY ......................................................................................................... 93
en
heal.advisorName
Giannakidis, Prof. George
en
heal.committeeMemberName
Dr. Giannakidis
en
heal.committeeMemberName
Prof. Papadopoulos
en
heal.committeeMemberName
Dr. Martinopoulos
en
heal.academicPublisher
School of Science &Technology, Master of Science (MSc) in Energy Systems
en
heal.academicPublisherID
ihu
heal.numberOfPages
109
heal.fullTextAvailability
true


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