Development of Sustainable Energy : Generation Technologies and Concepts

The book begins with an investigation of improved diesel generator flexibility and coordination via low-load diesel applications. Case studies for Australia and Hawaii are presented to conclude that low-load diesel is a natural precursor to storage due to its accessibility and also benefits low and...

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Year of Publication:2020
Language:English
Physical Description:1 electronic resource (130 p.)
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spelling Muneer, Tariq edt
Development of Sustainable Energy Generation Technologies and Concepts
Development of Sustainable Energy
Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
1 electronic resource (130 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
The book begins with an investigation of improved diesel generator flexibility and coordination via low-load diesel applications. Case studies for Australia and Hawaii are presented to conclude that low-load diesel is a natural precursor to storage due to its accessibility and also benefits low and high-penetration isolated power systems. The book continues with Structural Equation Modelling of building occupants attitude, knowledge and behaviour to propose the inclusion of motivational factors in a Building Occupant Environmental Behaviour model for sustainable building energy performance. The following section presents an analysis of different levels of renewable energy integration and energy storage to suggest the most suitable in terms of the reduction of CO2 emissions and expected earnings from a lower LCOE. Further on, a proof-of-concept heat pipe technology for passive cooling to improve the performance of photovoltaic panels in the hot climate of Oman is presented using computational fluid dynamics (CFD). The application of an uncontrolled diode rectifier-high voltage direct current transmission system for the Jeju Island power system with an off-shore new wind farm is simulated to demonstrate cost reduction and increased reliability and stability. The book concludes with view factor computations of bifacial solar photovoltaic based on the finite element method using two programming languages to demonstrate that Python offers a better platform than Microsoft Excel-Visual Basic for Applications where computation time is a significant modelling challenge.
English
Research & information: general bicssc
building energy exchange
view factor
Python programming language
bifacial solar photovoltaic (PV)
diode rectifier
HVDC
Jeju Island power system
offshore wind farm
CFD
heat pipe
temperature
photovoltaic
spanwise
wind energy
storage
islanded systems
energy consumption
Structural Equation Modelling (SEM), occupant environmental attitude
Knowledge and Behaviour
battery storage
hybrid power system
low-load diesel
microgrid
remote area
3-03943-320-2
3-03943-321-0
Gul, Mehreen Saleem edt
Gago, Eulalia Jadraque edt
Muneer, Tariq oth
Gul, Mehreen Saleem oth
Gago, Eulalia Jadraque oth
language English
format eBook
author2 Gul, Mehreen Saleem
Gago, Eulalia Jadraque
Muneer, Tariq
Gul, Mehreen Saleem
Gago, Eulalia Jadraque
author_facet Gul, Mehreen Saleem
Gago, Eulalia Jadraque
Muneer, Tariq
Gul, Mehreen Saleem
Gago, Eulalia Jadraque
author2_variant t m tm
m s g ms msg
e j g ej ejg
author2_role HerausgeberIn
HerausgeberIn
Sonstige
Sonstige
Sonstige
title Development of Sustainable Energy Generation Technologies and Concepts
spellingShingle Development of Sustainable Energy Generation Technologies and Concepts
title_sub Generation Technologies and Concepts
title_full Development of Sustainable Energy Generation Technologies and Concepts
title_fullStr Development of Sustainable Energy Generation Technologies and Concepts
title_full_unstemmed Development of Sustainable Energy Generation Technologies and Concepts
title_auth Development of Sustainable Energy Generation Technologies and Concepts
title_alt Development of Sustainable Energy
title_new Development of Sustainable Energy
title_sort development of sustainable energy generation technologies and concepts
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2020
physical 1 electronic resource (130 p.)
isbn 3-03943-320-2
3-03943-321-0
illustrated Not Illustrated
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