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Bagus Nugroho
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Large-scale spanwise periodicity in a turbulent boundary layer induced by highly ordered and directional surface roughness
B Nugroho, N Hutchins, JP Monty
International Journal of Heat and Fluid Flow 41, 90-102, 2013
1772013
Cross-stream stereoscopic particle image velocimetry of a modified turbulent boundary layer over directional surface pattern
K Kevin, JP Monty, HL Bai, G Pathikonda, B Nugroho, JM Barros, ...
Journal of Fluid Mechanics 813, 412-435, 2017
992017
Investigation of fuel consumption on an operating ship due to biofouling growth and quality of anti-fouling coating
ML Hakim, B Nugroho, MN Nurrohman, IK Suastika, I Utama
IOP Conference Series: Earth and Environmental Science 339 (1), 012037, 2019
512019
Review of correlation between marine fouling and fuel consumption on a ship
ML Hakim, I Utama, B Nugroho, AK Yusim, MS Baithal, IK Suastika
Proceeding of SENTA: 17th Conference on Marine Technology, 122-129, 2017
292017
Characteristics of drag due to streamwise inhomogeneous roughness
IK Suastika, ML Hakim, B Nugroho, A Nasirudin, I Utama, JP Monty, ...
Ocean Engineering 223, 108632, 2021
282021
Impact of spanwise effective slope upon rough-wall turbulent channel flow
TO Jelly, A Ramani, B Nugroho, N Hutchins, A Busse
Journal of Fluid Mechanics 951, A1, 2022
202022
Drag penalty causing from the roughness of recently cleaned and painted ship hull using RANS CFD
ML Hakim, B Nugroho, RC Chin, T Putranto, IK Suastika, IKAP Utama
CFD Letters 12 (3), 78-88, 2020
202020
Non--type behaviour of roughness when in-plane wavelength approaches the boundary layer thickness
B Nugroho, JP Monty, I Utama, B Ganapathisubramani, N Hutchins
Journal of Fluid Mechanics 911, A1, 2021
172021
The effect of cleaning and repainting on the ship drag penalty
I Utama, B Nugroho, M Yusuf, FA Prasetyo, ML Hakim, IK Suastika, ...
Biofouling 37 (4), 372-386, 2021
162021
Turbulent boundary layers developing over rough surfaces: from the laboratory to full-scale systems
N Hutchins, JP Monty, B Nugroho, B Ganapathisubramani, I Utama
20th Australasian fluid mechanics conference 1235, 2016
152016
Roll-modes generated in turbulent boundary layers with passive surface modifications
B Nugroho, E Gnanamanickam, K Kevin, J Monty, N Hutchins
52nd Aerospace Sciences Meeting, 0197, 2014
152014
In-situ turbulent boundary layer measurements over freshly cleaned ship-hull under steady cruising
B Nugroho, R Baidya, MN Nurrohman, AK Yusim, FA Prasetyo, M Yusuf, ...
Proceeding of International Conference on Ship and Offshore Technology …, 2017
142017
A study of skin friction drag from realistic roughness of a freshly cleaned and painted ship hull
BG I. K. A. P. Utama, B. Nugroho, C. Chin, M. L. Hakim, F. A. Prasetyo, M ...
International Symposium on Marine Engineering (ISME), 2017
142017
An investigation into the effects of highly directional surface roughness on turbulent boundary layers
B Nugroho, V Kulandaivelu, Z Harun, N Hutchins, JP Monty
17th Australasian Fluid Mechanics Conference, 2010
122010
Wind-tunnel experiments and CFD simulations to study the increase in ship resistance components due to roughness
ML Hakim, N Maqbulyani, B Nugroho, IK Suastika, I Utama
Journal of sustainability science and management 16 (3), 144-163, 2021
112021
Biofouling, ship drag, and fuel consumption: A brief overview
IKAP Utama, B Nugroho
Journal of Ocean Technology 13 (2), 42-48, 2018
92018
Assessment of drag penalty resulting from the roughness of freshly cleaned and painted ship-hull using computational fluid dynamics
ML Hakim, B Nugroho, C Chin, T Putranto, I Suastika, I Utama
11th International Conference on Marine Technology (MARTEC), Kuala Lumpur …, 2018
92018
Wall-parallel PIV measurements in turbulent boundary layers with highly directional surface roughness
K Kevin, B Nugroho, JP Monty, N Hutchins
19th Australasian Fluid Mechanics Conference, Melbourne, Australia, 2014
92014
Effects of diverging and converging roughness on turbulent boundary layers
B Nugroho, N Hutchins, JP Monty
18th Austr. Fluid Mech. Conf., Launceton, Australia, 2012
92012
Alternative empirical formula for predicting the frictional drag penalty due to fouling on the ship hull using the design of experiments (doe) method
ML Hakim, B Nugroho, IK Suastika, I Utama
International Journal of Technology 12 (4), 829, 2021
82021
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