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J-GLOBAL ID:202401002317307665   更新日: 2025年02月05日

NGUYEN DANG KHOA

グエン ダン コア | NGUYEN DANG KHOA
所属機関・部署:
職名: 助教
研究キーワード (3件): Biomedical Engineering ,  Public Health Engineering ,  Computational Fluid Dynamics
論文 (13件):
  • Nguyen Dang Khoa, Kazuma Nita, Kazuki Kuga, Kazuhide Ito. Oral configuration-dependent variability of the metrics of exhaled respiratory droplets during a consecutive coughing event. Computer Methods and Programs in Biomedicine. 2025
  • Hanyu Li, Nguyen Dang Khoa, Kazuki Kuga, Kazuhide Ito. In silico identification of viral loads in cough-generated droplets - Seamless integrated analysis of CFPD-HCD-EWF. Computer Methods and Programs in Biomedicine. 2024
  • Nguyen Dang Khoa, Kazuki Kuga, Kiao Inthavong, Kazuhide Ito. Coupled Eulerian Wall Film-Discrete Phase model for predicting respiratory droplet generation during a coughing event. Physics of Fluids. 2023
  • Nguyen Dang Khoa, Sixiao Li, Nguyen Lu Phuong, Kazuki Kuga, Hidetake Yabuuchi, Keiko Kan-O, Koichiro Matsumoto, Kazuhide Ito. Computational fluid-particle dynamics modeling of ultrafine to coarse particles deposition in the human respiratory system, down to the terminal bronchiole. Computer Methods and Programs in Biomedicine. 2023
  • Kazuki Kuga, Ryusei Kizuka, Nguyen Dang Khoa, Kazuhide Ito. Effect of transient breathing cycle on the deposition of micro and nanoparticles on respiratory walls. Computer Methods and Programs in Biomedicine. 2023
もっと見る
MISC (1件):
  • Nguyen Dang Khoa, Nguyen Lu Phuong, Kazuhide Ito. Heterogeneity of ultrafine particle deposition patterns in two realistic human upper airway models. 16th Conference of the International Society of Indoor Air Quality and Climate: Creative and Smart Solutions for Better Built Environments, Indoor Air 2020. 2020
学歴 (3件):
  • 2021 - 2024 九州大学
  • 2019 - 2021 九州大学
  • 2013 - 2018 University of Natural Resources and Environment, Ho Chi minh City
経歴 (1件):
  • 2024/04 - 現在 九州大学
受賞 (2件):
  • 2024/03 - 九州大学 学生表彰
  • 2018/07 - Roomvent Ventilation Conference Best Paper Award Comparative numerical simulation of inhaled particles transportation in upper human airway for intersubject differences
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