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Modelling small-scale stand-alone (PV) energy systems with reverse osmosis integration
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Document Date: 2013-01-16 01:51:08


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City

Orlando / Perth / Nairobi / /

Company

International Energy Agency / Renewable Energy / /

Country

Tunisia / Libya / Australia / /

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Event

Environmental Issue / /

Facility

Edith Cowan University / National Centre of Excellence / /

IndustryTerm

hourly resolved energy / energy demand / storage media / wind energy / power everyday utilities / energy system scalability / Online Climate Data / powered energy systems / energy sources / utilities increases / powered hydrogen systems / excess energy storage / energy availability falls / energy storage media / desalination systems / basic energy aspects / simulation software / equivalent energy / energy availability / energy / energy recovery / excess energy / electricity / powered desalination systems / energy sources-hybrid wind/photvoltaic/grid power supply / energy storage / energy consumption / energy system components / battery-free energy storage / energy conversion / lower energy availability / energy requirements / energy /

Organization

G. Kothapalli School of Engineering / Edith Cowan University / National Centre of Excellence / Power Management Unit / International Congress / Bureau of Meteorology / Australian Postgraduate Award and National Centre for Excellence / /

Person

Abdallah / Barek Taee / Mohsen / Al Maleh / Ben M'Barek / Abu-Hilal / Al Taee / D. Clarke / Jamil Ahmad / /

Position

Programmable Logic Controller / Governor / Controller / /

ProgrammingLanguage

MATLAB / php / DC / Simulink / /

ProvinceOrState

Western Australia / /

Region

Middle East / West Australia / Western Australia / /

Technology

radiation / PV-wind hybrid energy system using genetic algorithms / fuel cell / Simulation / sustainable desalination technologies / /

URL

http /

SocialTag