Area of research
Civil and Structural Engineering · Control and Systems Engineering
Research interest
Research focused on Nonlinear system and Viscoelasticity, with related work in Damper, Vibration, Demolition. Notable publications include 'A building information modeling-based tool for estimating building demolition waste and evaluating its environmental impacts', 'Polyvinyl pyrrolidone modified graphene oxide for improving the mechanical, thermal conductivity and solvent resistance properties of natural rubber', and 'A deep learning–based surrogate model for spatial-temporal temperature field prediction in subway tunnel fires via CFD simulation'.
A deep learning–based surrogate model for spatial-temporal temperature field prediction in subway tunnel fires via CFD simulation
A hybrid constitutive model of high-damping viscoelastic materials used for vibration control of civil structures
Numerical Study of Cone Penetration Tests in Lunar Regolith for Strength Index
A generalized mechanical model with high-flexibility of viscoelastic damping materials and devices considering frequency and amplitude dependence effects
Development and Validation of a Nonlinear Model to Describe the Tension–Compression Behavior of Rubber-Like Base Isolators
Study of a Novel Nonlinear Viscoelastic Bio-Inspired Multi-Dimensional Vibration Isolation Device
A building information modeling-based tool for estimating building demolition waste and evaluating its environmental impacts
Theoretical and Experimental Research of Viscoelastic Damping Limb-Like-Structure Device with Coupling Nonlinear Characteristics
Improved Mathematical Model for Analysis of the Payne Effect of Magnetorheological Elastomers
Polyvinyl pyrrolidone modified graphene oxide for improving the mechanical, thermal conductivity and solvent resistance properties of natural rubber