Exploration of catalysts reactions in thermal management of visco-elastic materials affected by solid compounds
摘要
A wide range of reactive structures possessing chemical reactions in biochemical structures, combustion, and cubic catalysis are homogeneous and heterogeneous. Additionally, chemical reactions are employed in the hydrometallurgical food manufacturing sector, in the dispersion and fog-forming industries, and the production of polymers and ceramics. Thus, this study considers the simultaneous influences of autocatalysis and variable source and sink optimizations in the continuous motion of visco-elastic materials. The dynamics of such materials are due to the moving of cylindrical shapes. However, the dynamics of such materials are governed by a set of mathematical equations with high viscosity and low inertial forces aspects. The formal analysis is then highlighted in the form of thermal, speed, volume fraction, drag forces, and heat and mass balance features. An appropriate illustration regarding the key findings is determined via declined velocity for various uplifted values of the Lorentz force factor. The lower amount of heat transfer caused lower thermal behaviours for the optimized heat source/sink factor. Reduction in thermal conduct is noticed for low viscous regions and vice versa. The inclusion of solid compounds caused a significant decline. Verification of the implemented method is portrayed by providing a minimum error comparison while following the restricted criteria.