Resourceful Graduate Research Assistant passionate about advancing knowledge in renewable and sustainable energy systems (including power, cooling, heating, and desalination) through high-quality research. Self-motivated professional with excellent communication, planning and problem solving abilities.
1. Identify, develop, evaluate and optimize different renewable and conventional power, cooling, heating, and desalination systems by conducting in-depth literature review and thermodynamic, economic and environmental modeling and optimization.
2. Construct and validate (against appropriate reference data) thermodynamic, economic and environmental models of regional and distributed-scale energy systems including using energy planning/modeling software, both for conventional and low-carbon energy systems.
3. Write independently publications for submission to high-quartile ranked journals and premier energy/mechanical engineering conferences.
4. Collaborate and work in a collegial manner with the project team members.
5. Support the project team in the advancement of the research program.
Giving training courses in HVAC systems, Research Methodology, EES software, Fluid and Heat Transfer Engineering.
Engineering Equation Software (EES)
1- Achieved Poster Award for Faculty and Postdoc category presented by Research and Graduate Studies Office at Qatar University (28 Oct-2020).
2- Graduation Projects Competition Award introduced by Jordanian Engineers Association, 2016.
3- Appreciation certificate from the Yemeni Cultural Attaché, Jordan in recognition of scientific researches.
4-The Yemeni Ministry of higher Education Scholarship for the BSc Degree in Jordan at (Jordan University of Science and Technology), 2011.
5. Award for outstanding students, being the first one among the batch for two semesters.
[1] A.K. Sleiti, W. Al-ammari, S. Ahmed, J. Kapat, Direct-fired oxy-combustion supercritical-CO2 power cycle with novel preheating configurations -thermodynamic and exergoeconomic analyses, Energy. 226 (2021) 120441. https://doi.org/10.1016/j.energy.2021.120441.
[2] A.K. Sleiti, W.A. Al-Ammari, Energy and exergy analyses of novel supercritical CO2 Brayton cycles driven by direct oxy-fuel combustor, Fuel. 294 (2021) 120557. https://doi.org/10.1016/j.fuel.2021.120557.
[3] A.K. Sleiti, W.A. Al-Ammari, M. Al-Khawaja, Integrated novel solar distillation and solar single-effect absorption systems, Desalination. 507 (2021) 115032. https://doi.org/10.1016/j.desal.2021.115032.
[4] A.K. Sleiti, W.A. Al-Ammaria, M. Al-Khawaja, A novel solar integrated distillation and cooling system - Design and analysis, Sol. Energy. 206 (2020) 68–83. https://doi.org/10.1016/j.solener.2020.05.107.
[5] A.K. Sleiti, W.A. Al-Ammari, M. Al- Khawaja, Analysis of Novel Regenerative Thermo-Mechanical Refrigeration System Integrated With Isobaric Engine, J. Energy Resour. Technol. 143 (2021) 1–10. https://doi.org/10.1115/1.4049368.
[6] A.K. Sleiti, M. Al-Khawaja, W.A. Al-Ammari, A combined thermo-mechanical refrigeration system with isobaric expander-compressor unit powered by low grade heat – Design and analysis, Int. J. Refrig. 120 (2020) 39–49. https://doi.org/10.1016/j.ijrefrig.2020.08.017.
[7] A.K. Sleiti, W.A. Al‐Ammari, M. Al‐Khawaja, Review of innovative approaches of thermo‐mechanical refrigeration systems using low grade heat, Int. J. Energy Res. 44 (2020) 9808–9838. https://doi.org/10.1002/er.5556.
[8] M.A. Al-Nimr, W.A. Al-Ammari, A novel hybrid and interactive solar system consists of Stirling engine ̸vacuum evaporator ̸thermoelectric cooler for electricity generation and water distillation, Renew. Energy. 153 (2020). https://doi.org/10.1016/j.renene.2020.02.072.
[9] M.A. Al-Nimr, W.A. Al-Ammari, A novel PVT/PTC/ORC solar power system with PV totally immersed in transparent organic fluid, Int. J. Energy Res. 43 (2019) 4766–4782. https://doi.org/10.1002/er.4615.
[10] M.A. Al-Nimr, W.A. Al-Ammari, A. Alkhalidi, A novel hybrid photovoltaics/thermoelectric cooler distillation system, Int. J. Energy Res. 43 (2019) 791–805. https://doi.org/10.1002/er.4309.
[11] M.A. Al-Nimr, W.A. Al-Ammari, M.-E. Dahdolan, Utilizing the evaporative cooling to enhance the performance of a solar TEG system and to produce distilled water, Sol. Energy. 146 (2017). https://doi.org/10.1016/j.solener.2017.02.037.
[12] M.A. Al-Nimr, W.A. Al-Ammari, A novel hybrid PV-distillation system, Sol. Energy. 135 (2016) 874–883. https://doi.org/10.1016/j.solener.2016.06.061.