Yongxing Shen (沈泳星)

About Yongxing Shen (沈泳星)

Yongxing Shen (沈泳星), With an exceptional h-index of 18 and a recent h-index of 14 (since 2020), a distinguished researcher at Shanghai Jiao Tong University, specializes in the field of Computational Mechanics, discontinuous Galerkin, fracture mechanics, phase field, hydraulic fracturing.

His recent articles reflect a diverse array of research interests and contributions to the field:

Asymptotic homogenization for phase field fracture of heterogeneous materials and application to toughening

Featured Cover

An efficient parallel solution scheme for the phase field approach to dynamic fracture based on a domain decomposition method

A Conservative Solid-Gas Coupling Scheme with Overlapping Meshes for Combustion Simulation of Propellants with Voids

An Asynchronous Variational Integrator for Contact Problems Involving Elastoplastic Solids

A phase-field-cohesive-zone framework to simulate multiple failure mechanisms of elastoplastic fiber-reinforced composites

Numerical investigation on spall fracture in metallic materials due to laser shock peening via phase field approach to fracture

A reduced-order peridynamic model for predicting nonlocal heat conduction in nanocomposites

Yongxing Shen (沈泳星) Information

University

Position

University of Michigan - Joint Institute

Citations(all)

1245

Citations(since 2020)

792

Cited By

706

hIndex(all)

18

hIndex(since 2020)

14

i10Index(all)

30

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Yongxing Shen (沈泳星) Skills & Research Interests

Computational Mechanics

discontinuous Galerkin

fracture mechanics

phase field

hydraulic fracturing

Top articles of Yongxing Shen (沈泳星)

Asymptotic homogenization for phase field fracture of heterogeneous materials and application to toughening

Composite Structures

2024/4/16

Featured Cover

Chirality

2021/12/1

An efficient parallel solution scheme for the phase field approach to dynamic fracture based on a domain decomposition method

International Journal for Numerical Methods in Engineering

2024/3/30

A Conservative Solid-Gas Coupling Scheme with Overlapping Meshes for Combustion Simulation of Propellants with Voids

Combustion Science and Technology

2024/3/15

An Asynchronous Variational Integrator for Contact Problems Involving Elastoplastic Solids

Acta Mechanica Solida Sinica

2024/2/1

A phase-field-cohesive-zone framework to simulate multiple failure mechanisms of elastoplastic fiber-reinforced composites

International Journal of Fracture

2023/12

Numerical investigation on spall fracture in metallic materials due to laser shock peening via phase field approach to fracture

Engineering Fracture Mechanics

2023/11/15

A reduced-order peridynamic model for predicting nonlocal heat conduction in nanocomposites

Composite Structures

2023/11/1

Development of phase-field modeling in materials science in China: a review

2023/11

An acceleration scheme for the phase field fatigue fracture simulation with a concurrent temporal homogenization method

Computer Methods in Applied Mechanics and Engineering

2023/11/1

GiftBTE: an efficient deterministic solver for non-gray phonon Boltzmann transport equation

Journal of Physics: Condensed Matter

2023/10/12

A phase field model for the solid-state sintering with parametric proper generalized decomposition

Powder Technology

2023/4/1

An asynchronous variational integrator for the phase field approach to dynamic fracture

International Journal for Numerical Methods in Engineering

2023/1/30

A review on phase field models for fracture and fatigue

2023/6/14

A “parallel universe” scheme for crack nucleation in the phase field approach to fracture

Computer Methods in Applied Mechanics and Engineering

2023/1/1

Numerical investigation on spall fracture in a metallic material caused by laser shock peening

Materials Today Communications

2022/12/1

Optimized Phonon Band Discretization Scheme for Efficiently Solving the Nongray Boltzmann Transport Equation

Journal of Heat Transfer

2022/7/1

Ultra-efficient and parameter-free computation of submicron thermal transport with phonon Boltzmann transport equation

Fundamental Research

2022/6/28

A hybrid damage model for simulating adiabatic shear bands

International Journal of Fracture

2022/6

Phase field formulation for the fracture of a metal under impact with a fluid formulation

Engineering Fracture Mechanics

2022/2/15

See List of Professors in Yongxing Shen (沈泳星) University(Shanghai Jiao Tong University)

Co-Authors

academic-engine