MOHAMMAD HAMDAN SALEH ALSMAIRN استاذ مشارك/رئيس قسم اكاديمي al-smairan@aabu.edu.jo Download CV orcid linkedin Google Scholar Scopus ResearchGate Jordan Open Innovation Platform Contact Member Ext: 5245,5243, Academic qualifications University Major Graduation Year Work Experience Foundation Position From To Head of Renewable Energy Engineering Department 22/09/2014 Till now Production and Maintenance Engineer 14/08/1994 31/07/1998 Researcher 03/08/1998 01/10/2009 Director of Energy Research Center 01/10/2009 12/09/2014 Research Researche Title عنــوان البحــث Publishing Year Water-energy nexus solutions for sustainable water pumping in semi-arid regions: A comparative techno-economic and environmental analysis of solar dish Stirling and photovoltaic systems 2026 Investigating The Potential Of Biofuels As A Sustainable Alternative To Fossil Fuels: Deployment Scenarios 2026 Perspectives of new solar energy option for sustainable residential electricity generation: A comparative techno-economic evaluation of photovoltaic and solar dish systems 2025 Techno-enviro-economic analysis of grid-connected solar powered f loating PV water pumping system for farmland applications: A numerical design model 2024 Experimental Analysis of Weather Condition Effects on Photovoltaic Systems? Performance: A Jordan Case Study 2024 Comparative Energy and Economic Analysis of Dish Stirling Engine and National Grid Electricity for Residential Building in Mafraq, Jordan 2024 Techno-economic investigation of an integrated boiler-solar water heating/cooling system: a case study 2021 Socio-economic Effects of solar home systems in Jordan-Badia-A case study in Rawthat Al-Bandan village 2019 Feasibility study to install wind farm in Bab A-Hawa, Irbid, Northwest of Jordan 2019 Techno-economic Feasibility of Energy supply of Remote Zone Family House in Jordan Badia by Photovoltaic System and Diesel Generators 2016 Assessment of wind energy potential as a power generation source in the Azraq South, Northeast Badia, Jordan 2015 Performance Evaluation and Stochastic Risk Analysis of Two 117 MW and 80 MW Grid-Connected Wind Power Plants Established in Jordan