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Mengtao Han
Mengtao Han
Zweryfikowany adres z hust.edu.cn - Strona główna
Tytuł
Cytowane przez
Cytowane przez
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Measurements of exhaled airflow velocity through human coughs using particle image velocimetry
M Han, R Ooka, H Kikumoto, W Oh, Y Bu, S Hu
Building and Environment 202, 108020, 2021
462021
Experimental measurements of airflow features and velocity distribution exhaled from sneeze and speech using particle image velocimetry
M Han, R Ooka, H Kikumoto, W Oh, Y Bu, S Hu
Building and environment 205, 108293, 2021
452021
Lattice Boltzmann method-based large-eddy simulation of indoor isothermal airflow
M Han, R Ooka, H Kikumoto
International Journal of Heat and Mass Transfer 130, 700-709, 2019
412019
Consistency of mean wind speed in pedestrian wind environment analyses: mathematical consideration and a case study using large-eddy simulation
H Kikumoto, R Ooka, M Han, K Nakajima
Journal of Wind Engineering and Industrial Aerodynamics 173, 91-99, 2018
372018
Numerical modeling of cough airflow: Establishment of spatial–temporal experimental dataset and CFD simulation method
W Oh, R Ooka, H Kikumoto, M Han
Building and Environment 207, 108531, 2022
262022
Effects of wall function model in lattice Boltzmann method-based large-eddy simulation on built environment flows
M Han, R Ooka, H Kikumoto
Building and Environment 195, 107764, 2021
252021
Validation of lattice Boltzmann method-based large-eddy simulation applied to wind flow around single 1: 1: 2 building model
M Han, R Ooka, H Kikumoto
Journal of Wind Engineering and Industrial Aerodynamics 206, 104277, 2020
232020
Field measurements on micro-climate and cooling effect of river wind on urban blocks in Wuhan city
G Han, H Chen, L Yuan, Y Cai, M Han
2011 International Conference on Multimedia Technology, 4446-4449, 2011
192011
A wall function approach in lattice Boltzmann method: algorithm and validation using turbulent channel flow
M Han, R Ooka, H Kikumoto
Fluid Dynamics Research 53 (4), 045506, 2021
172021
Effect of external air-conditioner units' heat release modes and positions on energy consumption in large public buildings
M Han, H Chen
Building and Environment 111, 47-60, 2017
162017
Influence of various factors on indoor/outdoor pollen concentration ratio based on experimental research: A review
W Wang, R Ooka, H Kikumoto, W Oh, M Han
Building and Environment 219, 109154, 2022
142022
Comparison between lattice Boltzmann method and finite volume method for LES in the built environment
M Han, R Ooka, H Kikumoto, K Nakajima
The 7th international symposium on computational wind engineering, 2-5, 2018
92018
Numerical modeling of sneeze airflow and its validation with an experimental dataset
W Oh, R Ooka, H Kikumoto, M Han
Indoor air 32 (11), e13171, 2022
72022
Large-Eddy Simulation Based on the Lattice Boltzmann Method for Built Environment Problems
M Han, R Ooka
Springer, 2023
42023
Impacts of solid wall boundary conditions in the lattice Boltzmann method on turbulent outdoor flow: A case study of a single 1: 1: 2 building model
H Chen, X Wu, M Han, Y Zhang
Building and Environment 226, 109708, 2022
42022
Effect of time steps on accuracy of indoor airflow simulation using lattice Boltzmann method
韩梦涛
同济大学学报 (自然科学版)(英文版) 50 (6), 793-801, 2022
32022
Compressibility error of lattice Boltzmann method-based large eddy simulation with BGK model in indoor flows
M Han, R Ookab, H Kikumotob
Proceedings of the 15th International Conference on Wind Engineering (ICWE15 …, 2019
32019
CFD analysis on cooling effect on a complex traditional urban area with river wind in summer
M Han, H Chen, L Yuan, G Han, B Li
2011 International Conference on Multimedia Technology, 3880-3883, 2011
32011
Mitigating aerosol-induced respiratory infections in home quarantine: The role of door dynamics and ventilation in residential design
X Wu, M Han, H Chen
Heliyon 10 (18), 2024
22024
Numerical investigation of lattice Boltzmann method-based large-eddy simulation in non-isothermal enclosed cavity airflow
M Han, H Kikumoto, R Ooka
International Communications in Heat and Mass Transfer 157, 107698, 2024
22024
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