activity
20172020
most citedA new shock-capturing scheme for stiff detonation waves problems

3 citations · 3 across the 2 of their papers we have counts for

collaborators

5 papers

physics.comp-ph2020

A new paradigm of dissipation-controllable, multi-scale resolving schemes for compressible flows

Xi Deng, Zhen-hua Jiang, Peter Vincent +2

The scale-resolving simulation of high speed compressible flow through direct numerical simulation (DNS) or large eddy simulation (LES) requires shock-capturing schemes to be more…

physics.comp-ph2020

Discontinuity-resolving shock-capturing schemes on unstructured grids

Lidong Cheng, Xi Deng, Bin Xie +2

Solving compressible flows containing discontinuities remains a major challenge for numerical methods especially on unstructured grids. Thus in this work, we make contributions to…

physics.comp-ph2018

Constructing high-order discontinuity-capturing schemes with linear-weight polynomials and boundary variation diminishing algorithm

Xi Deng, Yuya Shimizu, Feng Xiao

In this study, a new framework of constructing very high order discontinuity-capturing schemes is proposed for finite volume method. These schemes, so-called $\mathrm{P}_{n}\mathrm…

physics.comp-ph2018

A fifth-order shock capturing scheme with BVD algorithm

Xi Deng, Yuya Shimizu, Feng Xiao

A novel 5th-order shock capturing scheme is presented in this paper. The scheme, so-called P4-THINC-BVD (4th degree polynomial and THINC reconstruction based on BVD algorithm), is…

physics.comp-ph20173 cited

A new shock-capturing scheme for stiff detonation waves problems

Xi Deng, Honghui Teng, Bin Xie +1

A new approach to prevent spurious behavior caused by conventional shock-capturing schemes when solving stiff detonation waves problems is introduced in the present work. Due to sm…