Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Moslem Akbari Vakilabadi"'
Publikováno v:
Energy Science & Engineering, Vol 11, Iss 11, Pp 4224-4237 (2023)
Abstract Due to the increasing demand for electrical energy, efforts to increase the thermal efficiency of the steam and gas power plants have led to extensive reform in these cycles. One of these common reforms is employing a conventional combined g
Externí odkaz:
https://doaj.org/article/d36af10ec38b4ca7af16bd93caa4d0e2
Autor:
Mohammad Hossein Ahmadi, Alireza Khoeini Poorfar, Mokhtar Bidi, Seyed Milad Shams Ghoreishi, Moslem Akbari Vakilabadi, Milad Sadeghzadeh, Tingzhen Ming
Publikováno v:
Energy Science & Engineering. 7:230-254
Autor:
Alireza Rahbari, Moslem Akbari Vakilabadi, Tingzhen Ming, Alireza Khoeini Poorfar, Mokhtar Bidi, Mohammad Hossein Ahmadi, Abolfazl Afzalabadi
Publikováno v:
International Journal of Low-Carbon Technologies. 14:10-22
This research investigates the techno-economic assessment of a hybrid grid system of solar and wind power for a residual urban area in Khvaf town located in the eastern part of Iran. The temperature profiles of a 10-year period are gathered based on
Autor:
Abel Rouboa, Mehdi Bidabadi, Eliseu Monteiro, Alireza Khoeini Poorfar, Alireza Rahbari, Moslem Akbari Vakilabadi
Publikováno v:
Renewable Energy. 92:376-384
In the present study, a mathematical approach is utilized so as to modeling the flame structure of organic dust particle and air through a two-phase mixture consisting in a counterflow configuration where heat loss is taken into account. Lycopodium i
Publikováno v:
Heat Transfer Research. 46:1-11
Autor:
Moslem Akbari Vakilabadi, Alireza Rahbari, Alireza Khoeini Poorfar, Kau Fui Wong, Abolfazl Afzalabadi
Publikováno v:
Journal of Energy Resources Technology. 139
The main aim of this research is focused on determining the velocity and particle density profiles across the flame propagation of microlycopodium dust particles. In this model, it is tried to incorporate the forces acting on the particles such as th