Atıf Formatları
A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

A. Yapicioglu And İ. DİNCER, "A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production," Sustainable Energy Technologies and Assessments , vol.55, 2023

Yapicioglu, A. And DİNCER, İ. 2023. A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production. Sustainable Energy Technologies and Assessments , vol.55 .

Yapicioglu, A., & DİNCER, İ., (2023). A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production. Sustainable Energy Technologies and Assessments , vol.55.

Yapicioglu, Arda, And İbrahim DİNCER. "A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production," Sustainable Energy Technologies and Assessments , vol.55, 2023

Yapicioglu, Arda And DİNCER, İbrahim. "A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production." Sustainable Energy Technologies and Assessments , vol.55, 2023

Yapicioglu, A. And DİNCER, İ. (2023) . "A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production." Sustainable Energy Technologies and Assessments , vol.55.

@article{article, author={Arda Yapicioglu And author={İbrahim DİNCER}, title={A newly developed renewable energy driven multigeneration system with hot silica sand storage for power, hydrogen, freshwater and cooling production}, journal={Sustainable Energy Technologies and Assessments}, year=2023}