Advances in heat transfer and fluid flow are critical to the development of more efficient energy systems and improved industrial processes. Recent innovations have enhanced the ability to control and optimize thermal and fluid systems. These developments improve performance and energy efficiency while contributing to sustainability by reducing waste and emissions. As research continues to push the boundaries of thermal science, the field remains pivotal to addressing global challenges related to energy, environment, and technology.
Advances in Heat Transfer and Fluid Flow: Computational and Semi-Analytical Approaches explores modern heat transfer and fluid flow phenomena through a combination of analytical, semi-analytical, and computational techniques. It examines magnetohydrodynamics (MHD), porous media, nanofluids, and non-Newtonian fluid mechanics, with a strong emphasis on numerical and computational methods. This book covers topics such as biomedicine, thermal conductivity, and machine learning, and is a useful resource for physicists, engineers, biomedical professionals, academicians, researchers, and scientists.