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$6 USD / jam
Bendera INDONESIA
fq9h+fcg, gedongan, gedongan, indonesia
$6 USD / jam
Sekarang ini 4:55 PG di sini
Menyertai pada Ogos 9, 2022
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Taurista P.

@ristam52

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$6 USD / jam
Bendera INDONESIA
fq9h+fcg, gedongan, gedongan, indonesia
$6 USD / jam
N/A
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Kadar Upah Semula

Renewable Energy and Computational Fluid Dynamics

I have experiences in working in Computational Fluid Dynamics and Wind Turbine Design. My PhD research is about Wind Turbine Blade Design using Computational Fluid Dynamics. My interest is in Renewable Energy Development especially in developed countries. I also gives some lectures for undergraduate student in Mechanical Engineering
Freelancer Aeronautical Engineers Indonesia

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Ulasan

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Pengalaman

Lecturer

University of Muhammadiyah Surakarta
Okt 2015 - Hari ini
I am lecturer in the department Mechanical Engineering. My research is about Computational Fluid Dynamics and Renewable Energy.

Laboratory Assistant

University of the West of England
Jan 2018 - Jan 2022 (4 tahun)
Helping to assist the undergraduate student to use Ansys Fluent and CFX for Computational Fluid Dynamics related project

Laboratory Assistant

Institut Teknologi Sepuluh Nopember Surabaya
Ogo 2011 - Ogo 2013 (2 tahun)
Assistant of Energy Conversion Laboratory

Pendidikan

Doctor of Philosophy

University of the West of England, United Kingdom 2018 - 2022
(4 tahun)

Master of Science

National Cheng Kung University, Taiwan 2013 - 2015
(2 tahun)

Bachelor of Engineering

Institut Teknologi Sepuluh November, Indonesia 2009 - 2013
(4 tahun)

Penerbitan

A review on the use of passive flow control devices as performance enhancement of lift‐type……

Wiley Periodicals Inc
This article provides a comprehensive review about passive flow control devices (PFCDs) implemented in lift‐type vertical axis wind turbine (LVAWT), focusing on the underlying flow physics mechanisms and to what extents they can improve the LVAWT performance. In addition, some novel concepts that can be potentially implemented in future are also presented.

Optimisation of straight plate upstream deflector for the performance enhancement of vertical axis….

SAGE Publications
Location and geometry optimisations of Straight Plate Upstream Deflector (SPUD) for performance enhancement of a three-straightbladed Vertical Axis Wind Turbine (VAWT) are carried out at three regimes of tip speed ratios (TSRs). Results analysis reveals that SPUD location has significant effect on the power coefficient (Cp) increment of VAWT.

Geometry optimisation of vertical axis wind turbine with gurney flap for performance enhancement…

Elsevier
Optimisation of Gurney flap (GF) geometries mounted on a three-straight-bladed vertical axis wind turbine (VAWT) is evaluated with computational fluid dynamics (CFD) solution and Taguchi method, considering the blade rotating effect at three tip speed ratios (TSRs) of low, medium and high ranges. A hybrid RANS-LES model applying stress-blended eddy simulation with transition shear-stress transport turbulence model is adopted.

The effect of gurney flap on flow characteristics of vertical axis wind turbine

World Scientific Publishing Company
A three-straight-bladed VAWT rotating blade with GF is studied by transient RANS simulation together with a stress-blended eddy simulation (SBES) turbulence model to investigate the GF height effect and the flow characteristics near the blade trailing edge. Results have shown that by introducing the blade rotating, an optimum GF height is found to be 3% of the blade chord, slightly higher than 2% chord in a stationary airfoil case.

Comparison study of URANS and hybrid RANS-LES models on predicting VAWT performance……

Pergamon
Comparison study of unsteady Reynolds-averaged Navier-Stokes (URANS) and hybrid RANS-LES models is carried out for predicting the performance of three-straight-bladed vertical axis wind turbine operating within tip speed ratios (TSRs) ranges of (1.44–3.3). The evaluation is focused on power coefficient, moment coefficient and vortex structure generation, growth and transportation predictions.

Assessment of stress-blended eddy simulation model for accurate performance prediction of VAWT

Emerald
Assess the ability of a stress-blended eddy simulation (SBES) turbulence model to predict the performance of a three-straight-bladed vertical axis wind turbine (VAWT). The unsteady RANS equations are solved using the CFD technique.

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Pengesahan

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Kemahiran Teratas

Aeronautical Engineering Energy Renewable Energy Design Simulation

Layari Pekerja Bebas Serupa

Aeronautical Engineers in Indonesia
Aeronautical Engineers
Energy Experts
Renewable Energy Design Professionals

Layari Pameran Serupa

Aeronautical Engineering
Energy
Renewable Energy Design
Simulation
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