Thermal Radiative Flux Effect on Flow and Heat Transfer of CNTs-Water Nanofluid Through Convective Heated Riga Sensor Surface
摘要
Hybrid nanofluids find extensive applications across various fields, including engineering, manufacturing, and biomedicine. Inspired by these practical uses, the current research aimed to explore the heat transportation on a Riga sensor device. This study investigates the dispersion and movement of nanoparticles using carbon nanotubes (CNTs), specifically particles Single Wall Carbon Nanotubes (SWCNT) and Multi-Wall Carbon Nano Tubes (MWCNT). Through numerical simulations and in-depth analysis, this study unravels the intricate interactions involving the heat source/sink effects, viscous dissipation, radiative heat influences, and the role of CNTs nanoparticles. To standardize the governing equations and their corresponding boundary conditions, necessary similarity transformations are utilized. Subsequently, the transformed ordinary differential equations (ODEs) are handled using the bvp5c solver in MATLAB environment. The behavior of the characterizing factors is demonstrated briefly through graphs and tables validating the earlier established outcomes.