Перейти к основному содержанию
AkademIndex

Продукты

Для разработчиков

AkademBaseскороОткрытый API экосистемы
Латиница
Русский
Статья

Nanofluids' thermal assessment: Active and passive control approach

Muhammad Tehseen AzharDepartment of Mathematics, Sargodha Campus, University of Lahore, PakistanKamel Al‐KhaledDepartment of Mathematics & Statistics, Jordan University of Science and Technology, P.O. Box 3030, Irbid 22110, JordanSami Ullah KhanDepartment of Mathematics, Namal University, Mianwali 42250, PakistanM. Ijaz KhanDepartment of Mechanical Engineering, College of Engineering, Prince Mohammad Bin Fahd University, P. O. Box, 1664, Al-Khobar 31952, Kingdom of Saudi ArabiaBarno Sayfutdinovna AbdullaevaDepartment of Mathematics and Information Technologies, Vice-Rector for Scientific Affairs, Tashkent State Pedagogical University, Tashkent, UzbekistanMuhammad WaqasDepartment of Computer Science and Mathematics, Lebanese American University, Beirut, LebanonManish GuptaDivision of Research and Development, Lovely Professional University, Phagwara, India
ABI

Аннотация

The nanofluids are decomposition of nano-sized metallic particles with base materials maintaining peak thermal properties. Owing to enhanced thermal features, various applications of nanofluids are observed in enhancing energy resources and cooling processes. The objective of current work is exploring the thermal impact of nanofluid associated to the oblique stagnation point flow. The thermal interpretation of nanofluid is subject to active and passive control approach. The heat trnasfer analysis is identified by using convective thermal flow constraints. The Buongiorno nanofluid model is adopted, endorsing the Brownian and thermophoresis consequences. The flow problem is first simplfied intodimensionless form. The numerical computations are performed by using famous shooting scheme with justifiable accuracy. A comparative change in the thermal phenomenon given the passive and active frameworks is presented. It is exmained that heat transfer reduces for stretching ratio parameter. The concentration profile reduces for angle of incidence for both active and passive control approach.

Темы

Идентификаторы

Цитирования и источники

Показатели — AkademScholar · Скоро