Slip flow over structured surfaces with entrapped microbubbles J Hyväluoma, J Harting Physical review letters 100 (24), 246001, 2008 | 242 | 2008 |
Protein diffusion in mammalian cell cytoplasm T Kühn, TO Ihalainen, J Hyväluoma, N Dross, SF Willman, J Langowski, ... PloS one 6 (8), e22962, 2011 | 210 | 2011 |
Simulation of liquid penetration in paper J Hyväluoma, P Raiskinmäki, A Jäsberg, A Koponen, M Kataja, J Timonen Physical Review E 73 (3), 036705, 2006 | 147 | 2006 |
How and why does willow biochar increase a clay soil water retention capacity? K Rasa, J Heikkinen, M Hannula, K Arstila, S Kulju, J Hyväluoma Biomass and Bioenergy 119, 346-353, 2018 | 137 | 2018 |
An efficient swap algorithm for the lattice Boltzmann method K Mattila, J Hyväluoma, T Rossi, M Aspnäs, J Westerholm Computer Physics Communications 176 (3), 200-210, 2007 | 102 | 2007 |
Comparison of implementations of the lattice-Boltzmann method K Mattila, J Hyväluoma, J Timonen, T Rossi Computers & Mathematics with Applications 55 (7), 1514-1524, 2008 | 90 | 2008 |
Lattice Boltzmann simulations in microfluidics: probing the no-slip boundary condition in hydrophobic, rough, and surface nanobubble laden microchannels J Harting, C Kunert, J Hyväluoma Microfluidics and Nanofluidics 8, 1-10, 2010 | 80 | 2010 |
Possibilities to improve soil aggregate stability using biochars derived from various biomasses through slow pyrolysis, hydrothermal carbonization, or torrefaction J Heikkinen, R Keskinen, H Soinne, J Hyväluoma, J Nikama, H Wikberg, ... Geoderma 344, 40-49, 2019 | 77 | 2019 |
Droplets on inclined rough surfaces J Hyväluoma, A Koponen, P Raiskinmäki, J Timonen The European Physical Journal E 23, 289-293, 2007 | 70 | 2007 |
Relative importance of organic carbon, land use and moisture conditions for the aggregate stability of post-glacial clay soils H Soinne, J Hyväluoma, E Ketoja, E Turtola Soil and Tillage Research 158, 1-9, 2016 | 67 | 2016 |
Simulations of slip flow on nanobubble-laden surfaces J Hyväluoma, C Kunert, J Harting Journal of Physics: Condensed Matter 23 (18), 184106, 2011 | 57 | 2011 |
Quantitative characterization of pore structure of several biochars with 3D imaging J Hyväluoma, S Kulju, M Hannula, H Wikberg, A Källi, K Rasa Environmental Science and Pollution Research 25, 25648-25658, 2018 | 55 | 2018 |
Effects of biomass type, carbonization process, and activation method on the properties of bio-based activated carbons V Siipola, T Tamminen, A Källi, R Lahti, H Romar, K Rasa, R Keskinen, ... North Carolina State University, 2018 | 54 | 2018 |
Are there environmental or agricultural benefits in using forest residue biochar in boreal agricultural clay soil? H Soinne, R Keskinen, J Heikkinen, J Hyväluoma, R Uusitalo, ... Science of the Total Environment 731, 138955, 2020 | 49 | 2020 |
A prospect for computing in porous materials research: Very large fluid flow simulations K Mattila, T Puurtinen, J Hyväluoma, R Surmas, M Myllys, T Turpeinen, ... Journal of Computational Science 12, 62-76, 2016 | 48 | 2016 |
The effects of gypsum on the transfer of phosphorus and other nutrients through clay soil monoliths R Uusitalo, K Ylivainio, J Hyväluoma, K Rasa, J Kaseva, P Nylund, ... Agricultural and Food Science 21 (3), 260-278, 2012 | 48 | 2012 |
Effects of pyrolysis temperature on the hydrologically relevant porosity of willow biochar J Hyväluoma, M Hannula, K Arstila, H Wang, S Kulju, K Rasa Journal of Analytical and Applied Pyrolysis 134, 446-453, 2018 | 46 | 2018 |
Evaluation of a lattice-Boltzmann method for mercury intrusion porosimetry simulations J Hyväluoma, P Raiskinmäki, A Jäsberg, A Koponen, M Kataja, J Timonen Future Generation Computer Systems 20 (6), 1003-1011, 2004 | 45 | 2004 |
Impalement transitions in droplets impacting microstructured superhydrophobic surfaces J Hyväluoma, J Timonen Europhysics Letters 83 (6), 64002, 2008 | 44 | 2008 |
Impact states and energy dissipation in bouncing and non-bouncing droplets J Hyväluoma, J Timonen Journal of Statistical Mechanics: Theory and Experiment 2009 (06), P06010, 2009 | 33 | 2009 |