S. Kuharat
Papers
2
Total Citations
13
H-Index
1
About
S. Kuharat is a rising researcher in computational fluid dynamics and multiphysics engineering, with a focus on smart functional materials and renewable energy systems. Her work bridges theoretical modeling and real-world applications, particularly in the areas of non-Newtonian nanofluid dynamics and fluid-structure interaction. Her most-cited paper (2024, 12 citations) investigates electroconductive hybrid nanofluid flow from a stretching rotating disk, incorporating a Cattaneo–Christov heat flux model—a study motivated by emerging needs in pharmaceutical and robotics coating systems. This work advances understanding of swirl coating with magnetic power-law rheological polymers. In a complementary study (2024, 1 citation), she explores two-way fluid-structure interaction hydroelastic simulation of vibrating membranes for marine renewable wave power, addressing the design of compliant structures for floating cities and novel energy harvesters. Kuharat’s research is notable for its interdisciplinary impact, combining heat transfer, rheology, and structural mechanics. Her contributions are increasingly cited by engineers developing next-generation nanopolymeric coatings and ocean energy technologies, marking her as a promising voice in sustainable engineering and smart materials design.
Research Focus
Key Achievements
Top Papers
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- 2