LE DINH ANH, Ph. D (Eng.)
Contact:
School of Aerospace Engineering,
VNU-University of Engineering and
Technology, 403-E5, 144 Xuan Thuy,
Cau Giay, Hanoi
Tel:
+84-973242703
Email:
anh.ld@vnu.edu.vn
Homepage:
LeDinhAnh_Google Scholar
/~anh.ld/
1. EDUCATION
Engineering Deg. in Mechanical Eng.: 2013, Hanoi University of Science and
Technology, Vietnam
Master Deg. in Mechanical Eng.: 2015, Tohoku University, Japan
Doctor Deg. In Mechanical Eng. (Ph. D): 2019, Tohoku University, Japan
2. CAREER
2016 2018: Research Assistant Takuetsu-Kyoten-Program, Excellent Graduate
Schools, “World Center of Education and Research for Trans-disciplinary Flow
Dynamics”, Tohoku University.
2017 2019: Research assistance at Graduate School of Engineering, Tohoku University
2019 Present: Lecturer at School of Aerospace Engineering, VNU - University of
Engineering and technology
3. TEACHING COURSES
Fluid Mechanics
Engineering Graphics
Dynamics of Systems
Advanced numerical method for Aerospace engineering
Numerical method
Machine elements
4. RESEARCH INTEREST AND SPECIALISATION
Turbomachine
Cavitation and thermodynamic effect (Computational Fluid Dynamics - CFD)
Aerodynamic optimization of vertical axis wind turbine (CFD)
Drag reduction (CFD)
5. RESEARCH GRANTS
Grant CN.20.16 of VNU-University of Engineering and Technology, 2020 2021 (PI)
Grant 107.03-2020.22 of the National Foundation for Science & Technology Development
(NAFOSTED), 2020 2022 (PI)
Grant QG.21.32 of Vietnam National University, 2021 2023 (PI)
Grant VNU.2021.TTS.08 of VNU postdoctoral fellowship, 2021 (PI)
Grant VINIF.2022.STS.02 of Vingroup Innovation Foundation VINIF, 2022 (PI)
Grant CN.19 of VNU-University of Engineering and Technology, 2019 2020 (Member)
Grant QG.21.33 of Vietnam National University, 2021 2023 (Member)
Grant 107.03-2021.37 of the National Foundation for Science & Technology Development
(NAFOSTED), 2023 - (Member)
6. HONORS AND AWARDS
o The scientist with high achievements in scientific research and innovation of VNU (2022)
o Certificate of VNU-University of Engineering and Technology for Young Representative
Scientist (2022)
o Certificate of VNU-University of Engineering and Technology for supervising the first
prize student research project. (2021)
o Tohoku University President Fellowship (2016 2019)
o JASSO Scholarship (2013 2014, 2016 2017)
o Fusheng Group Scholaship (2010)
o HUST Scholarship type A and B (2009 2012)
7. REFEREEING ACTIVITY
International journals
1. ASME Journal of Energy Resource and Technology (ISI)
2. International Journal of Technology (Scopus)
Domestic Journal
1. Vietnam Journal of Mechanics
8. PUBLICATIONS: 40 publications (31 papers in international journals and
international conferences, including SCI and SCIE journals)
SCI ESCI journals
1. Anh, L. D., Okajima, J., Iga, Y., 2019, “Numerical Simulation of Cavitation in Liquefied
Hydrogen Using a Simplified Thermodynamic Model,” Cryogenics, Vol. 101, pp. 29-35.
(ISSN: 0011-2275)
2. Anh, L. D., Okajima, J., Iga, Y., 2019, “Modification of Energy Equation for
Homogeneous Cavitation Simulation with Thermodynamic Effect,” ASME Journal of
Fluids Engineering, Vol. 141(8), pp. 081102 (ISSN: 0098-2202)
3. Anh, L. D., Hoang, P. T., Hung, T. T., 2021, “Assessment of a Homogeneous Model for
Simulating a Cavitating Flow in Water under a Wide Range of Temperatures,” ASME
Journal of Fluids Engineering 143(10): 101204, https://doi.org/10.1115/1.4051078
(ISSN: 0098-2202)
4. Anh, L. D., 2022, “Study of Thermodynamic Effect on the Mechanism of Flashing Flow
under Pressurized Hot Water by a Homogeneous Model,” ASME Journal of Fluids
Engineering 144(1): 011206 (ISSN: 0098-2202)
5. Hung, T. T., Masayuki, A., Takuji, N., Keigo, S., Anh, L. D., 2022, “Experimental study
of the skin-friction topology around the Ahmed body in cross-wind condition,” ASME
Journal of Fluids Engineering 144(3), 031209 (ISSN: 0098-2202)
6. Anh, L. D., Hung, T. T., 2022, Improvement of Mass Transfer Rate Modeling for
Prediction of Cavitating Flow,” Journal of Applied Fluid Mechanics 15(2), 551-561
(ISSN: 1735-3645)
7. Anh, L. D., Linh, N. L., Anh, T. V., Hung, T. T., 2022, “Assessment of Flow Fluctuation
Pressure Models for Simulating the Cavitating Flow,” Technical Physics Letters, 48(4)
(ISSN: 1090-6533), DOI: 10.21883/TPL.2022.04.53487.19136
8. Anh, L. D., Minh, B. D., Tam, H. V., Hung, T. T., 2022, “Modified Savonius Wind
Turbine for Wind Energy Harvesting in Urban Environments,” ASME Journal of Fluids
Engineering 144(8): 081501 (ISSN: 0098-2202)
9. Anh, L. D., Minh, B., D., Hung, T. T., Trinh, C. D., 2022, “High Efficiency Energy
Harvesting Using a Savonius Turbine With Multicurve and Auxiliary Blade,” ASME
Journal of Fluids Engineering 144(11): 111207-1 (ISSN: 0098-2202)
10. Minh, B. D., Hung, T. T., Trinh, C. D., Duc, N. D., Anh, L. D, 2023, “Performance
enhancement of savonius wind turbine by multicurve blade shape,” Energy Source Part
A: Recovery, Utilization, and Environmental Effects 45(1), 1624-1642 (ISSN: 1556-
7230)
International Journals
1. Tran, T. H., Nguyen, D. D., Anh, L. D., 2022, “Design of a low-cost pressure
measurement device: validation and testing,” International Journal of Sustainable
Aviation 8(4), 336-352, https://doi.org/10.1504/IJSA.2022.126558 (ISSN: 2050-0475)
2. Do, V. M., Tran, T. H., Bui. X. S., Anh, L. D., 2022, “Influence of spike-nosed length on
aerodynamic drag of a wing-projectile model,” Advances in Military Technology 17(1),
33-45 (ISSN: 1802-2308)
3. Tran, T. H., Dao. C. T., Anh, L. D., Nguyen, T. M., 2022, “Numerical study for flow
behavior and drag of axisymmetric boattail models at different Mach number,” Lecture
Notes in Mechanical Engineering, https://doi.org/10.1007/978-981-19-1968-8_60
(ISSN: 2195-4364)
4. Minh, B. D., and Anh, L. D., 2022, “Effect of the Elliptical Shape on the Performance of
the Modified Savonius Wind Turbine,” Lecture Notes in Mechanical Engineering DOI:
https://doi.org/10.1007/978-981-19-1968-8_32 (ISSN: 2195-4364)
5. Anh. L. D., Long, I., N., Quan, H. N., Anh, T., V., 2022, “Numerical Simulation of Hot
Water Flashing Flow in a Converging - Diverging Nozzle,” Lecture Notes in
Mechanical Engineering, DOI: https://doi.org/10.1007/978-981-19-1968-8_62 (ISSN:
2195-4364)
6. Thanh, N. V., Anh, L. D., et al., 2022, Nummerical Analysis on Lift and Drag of a
Finite-Thickness Circular Arc Hydrofoil in Different Camber,” Lecture Notes in
Mechanical Engineering, https://doi.org/10.1007/978-981-19-1968-8_102 (ISSN:
2195-4364)
7. Hung, T. T., Anh, L. D., et al., 2022, Comparison of Numerical and Experimental
Methods in Determining Boundary Layer of Axisymmetric Model,” Lecture Notes in
Mechanical Engineering, https://doi.org/10.1007/978-3-030-99666-6_45 (ISSN: 2195-
4364)
8. Minh, B. D., Anh, L. D., et al., 2022, “Effect of Main Blade Configuration on the
Performance of the Optimized Multicurve Savonius Wind Turbine,” Lecture Notes in
Networks and Systems, https://doi.org/10.1007/978-3-031-22200-9_48 (ISSN: 2367-
3389)
9. Anh, L. D., Iga, Y., 2019, “A simplified Thermodynamic Effect Model for Cavitating
Flow in Hot Water,” IOP Conference series: Earth and Environment Science, Vol. 240,
062024
Domestic Journals
1. Anh, D. L., 2021, “Experimental and Numerical Evaluation of a Simplified
Thermodynamic Model for NACA0015 Hydrofoil Cavitation in Hot Water,” Vietnam
Journal of Mechanics 43(3): 253-264
2. Anh, D. L., Quan, N., H., Long, I. N., Anh, T. V., 2022, “Ảnh hưởng của hình độ
nht ri lên phng dòng xâm thực trong nước nhiệt độ cao,” TNU Journal of
Science and Technology 227(08) (ISSN: 2615-9562)
3. Hung, T. T., Anh, L. D., et al., 2022, “Thuật toán x lý ảnh tương quan chéo trong
phân tích dòng chảy vòi phun,” TNU Journal of Science and Technology 227(15)
(ISSN: 2615-9562)
International Conferences
1. Anh, L. D., Anh, T. V., 2012, A study of a new blade type for improving Savonius wind
turbine’s efficiency by means of CFD tool,” The 5th AUN/SEED-Net Regional
Conference on New/Renewable Energy, Hanoi.
2. Yamaguchi, Y., Anh, L. D., Iga, Y., 2014, “Effect of flow velocity on the structure of
cavity in a 2D nozzle,” Visualization Information Symposium, Tokyo, Japan. (Peer-
review)
3. Anh, L. D., Nohmi, M., Iga, Y., 2014, “Effect of Single-Phase Turbulence Model on the
Aspect of Cavitation in a Nozzle,” The 11th International Conference on Flow Dynamic
(ICFD), Sendai, Japan. (Peer-review)
4. Anh, L. D., Anh, B., Nohmi, M., Iga, Y., 2015, “Effect of Reynolds Number and Single-
Phase Turbulent Model on Cavitation inside a Nozzle,” 13th Asian International
Conference on Fluid Machinery, Tokyo, Japan. (Peer-review)
5. Anh, L. D., Iga, Y., 2016, “Influence of Cavitation Model on Cavity Surface Transition
in a Nozzle,” 13th International Conference on Flow Dynamics (ICFD), 10/2016,
Sendai, Japan. (Peer-review)
6. Anh, L. D., Iga, Y., 2017, “Simplified Modeling of Cavitating Flow with Thermodynamic
Effects for Homogeneous Model,” 17th International Symposium on Transport
Phenomena and Dynamics of Rotating Machinery ISROMAC, 12/2017, Maui, Hawaii,
USA. (Peer-review)
7. Anh, L. D., Iga, Y., 2018, “A simplified Thermodynamic Effect Model for Cavitating
Flow in Hot Water,” 29th IAHR Symposium on Hydraulic Machinery and Systems,
Kyoto, Japan. (Peer-review)
8. Anh, L. D., Iga, Y., 2018, “Numerical Simulation of Cavitating Flow with
Thermodynamic Effects of Cavitation,” 1st International Conference of Fluid
Machinery and Automation Systems, Hanoi. (Peer-review)
9. Anh, L. D., Okajima, J., Iga, Y., 2019, “Experimental and Numerical Study of Hot Water
Cavitation on a NACA0015 Hydrofoil,” The 5th International Conference on
Engineering Mechanics and Automation ICEMA 5, 11/2019, Hanoi (Peer-review)
10. Nakano, M., Anh, L., D., Okajima, J., Iga, Y., 2019, “Numerical Investigation of
Thermodynamic Parameter in Cavitating Flow of Liquid Hydrogen,” 16th International
Conference on Flow Dynamics (ICFD), Sendai, 10/2019 (Peer-review)
11. Tam, H. V., Anh, D. L., 2021, “Effect of the Mesh Types on the Prediction of Flow
Aerodynamic around Airfoil,” The 6th International Conference on Engineering
Mechanics and Automation (ICEMA 6) (Peer-review)
12. Hung, T. T., Anh, L. D., Trang, M. N., Truong, C. D., 2021, “Boundary measurement
for axisymmetric blunt base body by numerical and experimental method,” Advanced
Mechanical Engineering, Automation and Sustainable Development (AMAS2021)
(Peer-review)
Domestic Conferences
1. Anh, L. D., Anh, T. V., Iga, Y., 2016, “Kết hp mô hình ri RANS và mô hình xâm thc
ca Singhal trong vic mô phng cu trúc xâm thực trong vòi phun,” Hội ngh khoa hc
Cơ học thy khí toàn quc, Hanoi. (Peer-review)
2. Linh, L., N., Viet, T. D., Dưc, N. V., Anh, L., D., 2020, “Mô phỏng dòng xâm thực hơi
xâm thc khí bằng phương pháp mô hình đồng nht cho dòng không nht,” Hội ngh
Cơ học Thy khí Toàn quc, 11/2020, Hà Ni (Peer-review).
3. Minh, B., D., Tam, H., V., Anh, L., D., 2020, “Nghiên cứu biên dng cánh ci thin hiu
sut tuabin gió Savonius bng công c CFD,” Hi ngh học Thy khí Toàn quc,
11/2020, Hà Ni (Peer-review).
4. Hung, T. T., Truong, C. D., Minh, D. V., Trang, N. M., Chung, P., Anh, L. D., 2021,
“Application of RANS turbulence model in simulation base flow of axisymmetric body
in wide range of Mach number,” Hi ngh hc thy khí toàn quc 2021 (Peer-
review).
5. Thanh, N. V., Anh, L. D., Anh, T. V., 2021, “Đánh giá hiệu qu tính toán ca sáu s
hình ri phng dòng chy bao biên dng naca4412 ti s re 1x106,” Hi ngh
hc Thy khí Toàn quc 24
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