Перейти к основному содержанию
AkademIndex

Продукты

Для разработчиков

AkademBaseскороОткрытый API экосистемы
Латиница
Русский
Статья

Thermo-solutal convective conditions impact in dual stratified stagnation-point flow of second-grade (SG) fluid with chemical reaction

M. WaqasDepartment of Mechanical Engineering, Lebanese American University, Beirut, LebanonM. AshiqDepartment of Humanities & Basic Sciences, MCS Campus, National University of Sciences & Technology (NUST), Islamabad, 44000, PakistanMuhammad Salman KausarFaculty of Informatics and Computing, University Sultan Zainal Abidin (Kampus Gong Badak), Kuala Terengganu, Terengganu, 21300, MalaysiaSami Ullah KhanDepartment of Mathematics, Namal University, Mianwali, 42250, PakistanHala A. HejaziMathematics Department, Faculty of Sciences, Umm Al-Qura University, Makkah, Saudi ArabiaSherzod AbdullaevDepartment of Science and Innovation, Tashkent State Pedagogical University Named After Nizami, Tashkent, UzbekistanMohamed MedaniDepartment of Computer Science, College of Science and Art at Mahayil, King Khalid University, Muhayil Aseer, 62529, Saudi Arabia
ABI

Аннотация

In various engineering and industrial utilizations, the heat-mass transportation concept has been rigorously witnessed, for illustration air conditioning of room, nuclear reactors cooling and abundant other realistic conditions. This scrutiny elaborates buoyancy-driven viscoelastic magnetized flow configured by stretched vertical surface. Heat-transfer effects are explored through Ohmic dissipations and radiation aspects. Chemical reaction characteristics are deliberated to address the mass-transfer effects. In addition, the stratification phenomenon together with Robin conditions is introduced. Mathematical systems are simplified under BLT (boundary-layer theory). Non-dimensional analysis is done by introducing similarity variables. Homotopic criteria is utilized to compute convergent solutions. Consequence of controlling variables emerging in non-dimensional problem is analyzed via pictorial and tabular illustrations. It is evident that temperature field together with heat transference rate are enlarged when radiation and thermal Biot parameters are augmented.

Темы

Идентификаторы

Цитирования и источники

Показатели — AkademScholar · Скоро