Automated multi-class classification of skin lesions through deep convolutional neural network with dermoscopic images I Iqbal, M Younus, K Walayat, MU Kakar, J Ma Computerized medical imaging and graphics 88, 101843, 2021 | 138 | 2021 |
A finite particle method with particle shifting technique for modeling particulate flows with thermal convection ZL Zhang, K Walayat, C Huang, JZ Chang, MB Liu International journal of heat and mass transfer 128, 1245-1262, 2019 | 92 | 2019 |
Meshfree modeling of a fluid‐particle two‐phase flow with an improved SPH method ZL Zhang, K Walayat, JZ Chang, MB Liu International Journal for Numerical Methods in Engineering 116 (8), 530-569, 2018 | 61 | 2018 |
Dynamics of elliptic particle sedimentation with thermal convection K Walayat, Z Zhang, K Usman, J Chang, M Liu Physics of Fluids 30 (10), 2018 | 47 | 2018 |
An efficient multi-grid finite element fictitious boundary method for particulate flows with thermal convection K Walayat, Z Wang, K Usman, M Liu International Journal of Heat and Mass Transfer 126, 452-465, 2018 | 37 | 2018 |
Fully resolved simulations of thermal convective suspensions of elliptic particles using a multigrid fictitious boundary method K Walayat, Z Zhang, K Usman, J Chang, M Liu International Journal of Heat and Mass Transfer 139, 802-821, 2019 | 23 | 2019 |
Automated identification of human gastrointestinal tract abnormalities based on deep convolutional neural network with endoscopic images I Iqbal, K Walayat, MU Kakar, J Ma Intelligent Systems with Applications 16, 200149, 2022 | 22 | 2022 |
A thorough investigation of thermochemical heat storage system from particle to bed scale A Mahmoudi, PAJ Donkers, K Walayat, B Peters, M Shahi Chemical Engineering Science 246, 116877, 2021 | 18 | 2021 |
Experimental and numerical investigations for effective thermal conductivity in packed beds of thermochemical energy storage materials K Walayat, J Duesmann, T Derks, A Houshang Mahmoudi, R Cuypers, ... Applied Thermal Engineering 193, 117006, 2021 | 18 | 2021 |
Analysis of solid particles falling down and interacting in a channel with sedimentation using fictitious boundary method K Usman, K Walayat, R Mahmood, N Kousar AIP Advances 8 (6), 2018 | 12 | 2018 |
Numerical investigations for a chain of particles settling in a channel S Jabeen, K Usman, K Walayat Computational Particle Mechanics 7 (4), 615-627, 2020 | 11 | 2020 |
Sedimentation of general shaped particles using a multigrid fictitious boundary method K Walayat, N Talat, S Jabeen, K Usman, M Liu Physics of fluids 32 (6), 2020 | 9 | 2020 |
A velocity corrected unresolved CFD-DEM coupled method to reproduce wake effects at moderate Reynolds number Z Wang, K Walayat, M Liu Engineering Computations 36 (8), 2612-2633, 2019 | 9 | 2019 |
A multigrid finite element fictitious boundary method for fluid-solid two-phase flows K Walayat, Z Wang, K Usman, M Liu The 8th international conference on computational methods (ICCM2017), 2017 | 9 | 2017 |
Hybrid PD-DEM approach for modeling surface erosion by particles impact K Walayat, S Haeri, I Iqbal, Y Zhang Computational Particle Mechanics 10 (6), 1895-1911, 2023 | 2 | 2023 |
Wall effects on a falling solid particle in an infinite channel K Usman, K Walayat, R Mahmood, S Jabeen Fluid Dynamics Research 54 (1), 015514, 2022 | 1 | 2022 |
PD–DEM hybrid modeling of leading edge erosion in wind turbine blades under controlled impact scenarios K Walayat, S Haeri, I Iqbal, Y Zhang Computational Particle Mechanics, 1-19, 2024 | | 2024 |
NUMERICAL MODELLING OF LEADING-EDGE EROSION OF WIND TURBINE BLADES DUE TO PARTICLES IMPACT K Walayat, S Haeri World Congress on Particle Technology: WCPT9, 2022 | | 2022 |
Referee acknowledgment for 2021 AJ Giacomin Physics of Fluids 34 (2), 020201, 2022 | | 2022 |
Referee acknowledgment for 2021 AJ Giacomin Physics of Fluids 34 (2), 020201, 2022 | | 2022 |