Papers
1
Total Citations
20
H-Index
1
About
Runqing Cao is a rising figure in nonlinear mechanics and fluid-structure interaction (FSI), with a focus on the dynamics of flexible pipes conveying fluid—a cornerstone for innovations in soft robotics and biomedical devices. Their most cited work, "Nonlinear dynamics of a circular curved cantilevered pipe conveying pulsating fluid based on the geometrically exact model" (2024, 20 citations), introduces a geometrically exact framework to capture the complex, large-deformation behavior of curved pipes under pulsating flow. This contribution advances the understanding of stability and vibration in flexible conduits, offering critical insights for designing adaptable, bio-inspired systems. Cao’s research bridges theoretical modeling and practical application, addressing challenges in FSI that are pivotal for next-generation soft actuators and medical implants. With a growing citation impact, their work is gaining recognition among engineers and physicists exploring nonlinear dynamics. Cao’s achievements highlight a promising trajectory in applied mechanics, where their models are poised to influence both academic research and technological development in flexible structures.
Research Focus
Key Achievements
Top Papers
- 1