Atıf Formatları
Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

A. B. Çolak Et Al. , "Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network," Kerntechnik , vol.88, no.1, pp.100-113, 2023

Çolak, A. B. Et Al. 2023. Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network. Kerntechnik , vol.88, no.1 , 100-113.

Çolak, A. B., Mercan, H., Açıkgöz, Ö., Dalkılıç, A. S., & Wongwises, S., (2023). Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network. Kerntechnik , vol.88, no.1, 100-113.

Çolak, Andaç Et Al. "Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network," Kerntechnik , vol.88, no.1, 100-113, 2023

Çolak, Andaç B. Et Al. "Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network." Kerntechnik , vol.88, no.1, pp.100-113, 2023

Çolak, A. B. Et Al. (2023) . "Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network." Kerntechnik , vol.88, no.1, pp.100-113.

@article{article, author={Andaç Batur Çolak Et Al. }, title={Prediction of nanofluid flows' optimum velocity in finned tube-in-tube heat exchangers using artificial neural network}, journal={Kerntechnik}, year=2023, pages={100-113} }