1 |
Compressibility Effects on the Scalar Dissipation Rate John JP, Donzis DA, Sreenivasan KR Combustion Science and Technology, 192(7), 1320, 2020 |
2 |
Fast Mixing in Heterogeneous Media Characterized by Fractional Derivative Model Liang YJ, Dou Z, Wu LZ, Zhou ZF Transport in Porous Media, 134(2), 387, 2020 |
3 |
Closure of the scalar dissipation rate in the spray flamelet equations through a transport equation for the gradient of the mixture fraction Olguin H, Scholtissek A, Gonzalez S, Gonzalez F, Ihme M, Hasse C, Gutheil E Combustion and Flame, 208, 330, 2019 |
4 |
A new perspective on modelling passive scalar conditional mixing statistics in turbulent spray flames Wang BS, Kronenburg A, Stein OT Combustion and Flame, 208, 376, 2019 |
5 |
Impact of molecular mixing and scalar dissipation rate closures on turbulent bluff-body flames with increasing local extinction Tian L, Lindstedt RP Combustion and Flame, 206, 51, 2019 |
6 |
Micromixing Models for PDF Simulations of Turbulent Premixed Flames Ren ZY, Kuron M, Zhao XY, Lu TF, Hawkes E, Kolla H, Chen JH Combustion Science and Technology, 191(8), 1430, 2019 |
7 |
Fully resolved DNS of droplet array combustion in turbulent convective flows and modelling for mixing fields in inter-droplet space Wang BS, Kronenburg A, Tufano GL, Stein OT Combustion and Flame, 189, 347, 2018 |
8 |
Scalar dissipation rates in a turbulent partially-premixed dimethyl ether/air jet flame Fuest F, Barlow RS, Magnotti G, Sutton JA Combustion and Flame, 188, 41, 2018 |
9 |
Statistics of scalar dissipation and reaction progress in turbulent flames with compositional inhomogeneities Cutcher HC, Barlow RS, Magnotti G, Masri AR Combustion and Flame, 194, 439, 2018 |
10 |
Self-similar scaling of pressurised sooting methane/air coflow flames at constant Reynolds and Grashof numbers Bisetti F, Abdelgadir A, Steinmetz SA, Attili A, Roberts WL Combustion and Flame, 196, 300, 2018 |