activity
20182022
most citedReformulated dissipation for the free-stream preserving of the conservative finite difference schemes on curvilinear grids

2 citations · 5 across the 7 of their papers we have counts for

collaborators
Showing physics.comp-phShow all

8 papers · 1 filter

physics.comp-ph2022

A conservative level-set method based on a posterior mass correction preserving distance property for incompressible multiphase flows simulations

Tian Long, Jinsheng Cai, Shucheng Pan

As one of the most popular interface-capturing methods, the level-set method is inherently non-conservative, and its evolution usually leads to unphysical mass gain/loss. In this p…

physics.comp-ph20211 cited

A fully conservative sharp-interface method for compressible mulitphase flows with phase change

Tian Long, Jinsheng Cai, Shucheng Pan

A fully conservative sharp-interface method is developed for multiphase flows with phase change. The coupling between two phases is implemented via introducing the interfacial flux…

physics.comp-ph2020

A sufficient condition for free-stream preserving in the nonlinear conservative finite difference schemes on curvilinear grids

Hongmin Su, Jinsheng Cai, Kun Qu +1

In simulations of compressible flows, the conservative finite difference method (FDM) based on the nonlinear upwind schemes, e.g. WENO5, might violate free-stream preserving (FP),…

physics.comp-ph2019

An accelerated sharp-interface method for multiphase flows simulations

Tian Long, Jinsheng Cai, Shucheng Pan

In this work, we develop an accelerated sharp-interface method based on (Hu et al., JCP, 2006) and (Luo et al., JCP, 2015) for multiphase flows simulations. Traditional multiphase…

physics.comp-ph2018

A species-clustered ODE solver for large-scale chemical kinetics using detailed mechanisms

Jian-Hang Wang, Shucheng Pan, Xiangyu Y. Hu +1

In this study, a species-clustered ordinary differential equations (ODE) solver for chemical kinetics with large detailed mechanisms based on operator-splitting is presented. The O…

physics.comp-ph2018

A Split Random Time Stepping Method for Stiff and Non-stiff Chemically Reacting Flows

Jian-Hang Wang, Shucheng Pan, Xiangyu Y. Hu +1

In this paper, a new fractional step method is proposed for simulating stiff and nonstiff chemically reacting flows. In stiff cases, a well-known spurious numerical phenomenon, i.e…