Energy Storage Systems Lab - Publications

Publications

Compressed air energy storage (CAES)

  • Alami, Abdul Hai, Ahmad Yasin, Rashid Alrashid, Shamma Alasad, Haya Aljaghoub, Ghaith Alabsi, Latifa Alketbi, Anfal Alkhzaimi, Ameera Alteneji, and Siraj Shikhli. "Experimental evaluation of compressed air energy storage as a potential replacement of electrochemical batteries." Journal of Energy Storage 54 (2022): 105263.
  • Olabi, A. G., Tabbi Wilberforce, Mohamad Ramadan, Mohammad Ali Abdelkareem, and Abdul Hai Alami. "Compressed air energy storage systems: Components and operating parameters–A review." Journal of Energy Storage 34 (2021): 102000.
  • Alami, Abdul Hai, Kamilia Aokal, Jehad Abed, and Mohammad Alhemyari. "Low pressure, modular compressed air energy storage (CAES) system for wind energy storage applications." Renewable Energy 106 (2017): 201-211.
  • Alabsy, Mohamad G., Salah Haridy, and Abdul Hai Alami. "Design and economic analysis of compressed air energy storage systems for enhanced energy output." Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 46, no. 1 (2024): 17344-17355.

CAES/Expansion cooling

  • Alami, Abdul Hai, Rashid Alrashid, Ayman Mdallal, Ahmad Yasin, Mohamad Ayoub, Shamma Alasad, Haya Aljaghoub et al. "Expansion cooling prospects for large scale applications." International Journal of Thermofluids 20 (2023): 100437.
  • Alami, Abdul Hai, Mehmet Orhan, Rashid Al Rashid, Ahmad Yasin, Ali Radwan, Mohamad Ayoub, Mohammad Ali Abdelkareem, and Adnan Alashkar. "Cooling potential for hot climates by utilizing thermal management of compressed air energy storage systems." Scientific Reports 12, no. 1 (2022): 22066.
  • Alami, Abdul Hai, Ahmad Yasin, Siren Khuri, Ayman Mudallal, Mohamad Ayoub, Adnan Alashkar, Rashid AlRashid, and Shamma Abdalla. "Compressed air energy storage systems (CAES) and assessment of expansion cooling as an ancillary process." Science Talks 10 (2024): 100359.

Buoyancy work energy storage (BWES)

  • Alami, Abdul Hai. "Experimental assessment of compressed air energy storage (CAES) system and buoyancy work energy storage (BWES) as cellular wind energy storage options." Journal of Energy Storage 1 (2015): 38-43.
  • Hai Alami, Abdul. "Analytical and experimental evaluation of energy storage using work of buoyancy force." Journal of Renewable and Sustainable Energy 6, no. 1 (2014).
  • Alami, Abdul Hai, Mohamad Ayoub, Adnan Alashkar, Shamma Abdalla, Ahmad Yasin, and Ayman Mdallal. "Progress in experimental assessments of buoyancy work energy storage." Science Talks 10 (2024): 100361.
  • Alami, Abdul Hai, Mohamad Ayoub, Ahmad Yasin, Adnan Alashkar, Haya Aljaghoub, and Shamma Alasad Alabdalla. "Performance assessment of buoyancy work energy storage system with various buoy materials, coatings, and gasses." Journal of Energy Storage 72 (2023): 108524.

Pneumatic propulsion

  • Alami, Abdul Hai, Ahmad Yasin, Adnan Alashkar, Rashid Alrashid, Ayman Mdallal, Mohamad Ayoub, Shamma Alasad et al. "Experimental design and testing of a pneumatic propulsion system for maritime transportation." Ocean Engineering 308 (2024): 118335.
  • Alami, Abdul Hai, Kaj Jansson, Adnan Alashkar, Montaser Mahmoud, Ahmad Yasin, and Siren Khuri. "A techno-economic-environmental investigation of replacing diesel engines with pneumatic motors for ferry boats." Energy Conversion and Management 327 (2025): 119613.
  • Alami, Abdul Hai, Mohamad Ayoub, Adnan Alashkar, Fatima Alshamsi, Ayman Mdallal, Siren Khuri, and Selçuk Sarıkoç. "Pneumatic propulsion of vehicles." In Energy Rationality and Management for Decarbonization, pp. 355-372. Cham: Springer Nature Switzerland, 2025.

Books

me storage

pv technology

sustainable additive tech