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20192023
most citedA Novel Finite Difference Method for Euler Equations in 2D Unstructured Meshes

4 citations · 7 across the 6 of their papers we have counts for

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physics.comp-ph2023

A filtered embedded weighted compact nonlinear scheme for hyperbolic conservation law

Xuan Liu, Yaobing Min, Jinsheng Cai +2

In situations where a wide range of flow scales are involved, the nonlinear scheme used should be capable of both shock capturing and low-dissipation.Most of the existing WCNS sche…

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-ph20214 cited

A Novel Finite Difference Method for Euler Equations in 2D Unstructured Meshes

Meiyuan Zhen, Kun Qu, Jinsheng Cai

Finite difference method was extended to unstructured meshes to solve Euler equations. The spatial discretization is made of two steps. First, numerical fluxes are computed at the…

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…