Performance Analysis of Screw Turbine Design with Additional Flaps Modification Using Computational Fluid Dynamics Method
Abstract
Keywords
Full Text:
PDFReferences
G. Dellinger et al., “Computational fluid dynamics modeling for the design of Archimedes Screw Generator,” Renew. Energy, 2018, doi: 10.1016/j.renene.2017.10.093.
M. Lyons and W. D. Lubitz, “ES2013-18067,” no. 1999, pp. 1–7, 2013.
Japan For Sustainability (JFS), “Micro Hydropower System with Spiral Water Turbine under Development,” 2008. .
K. Brada, “‘Wasserkraftschnecke ermöglicht Stromerzeugung über Kleinkraftwerke [Hydraulic screw generates electricity from micro hydropower stations].,’” vol. 105, no. 14, pp. 52–56, 1999.
A. Lashofer, W. Hawle, and B. Pelikan, “State of technology and design guidelines for the Archimedes screw turbine,” Int. J. Hydropower Dams, Hydro 2012 - Proc., 2012.
N. A. Hidayatullah and H. N. K. Ningrum, “Optimalisasi Daya Pembangkit Listrik Tenaga Angin Turbin Sumbu Horizontal dengan Menggunakan Metode Maximum Power Point Tracker,” JEECAE (Journal Electr. Electron. Control. Automot. Eng., 2017, doi: 10.32486/jeecae.v1i1.5.
Suyitmadi, “Analisis Kinerja Flap Sebagai Penambah Koefisien Gaya Angkat,” 2000.
Y. Daryanto, “Kajian Potensi angin Untuk Pembangkit Listrik Tenaga Bayu,” Blueprint, no. April, 2007.
J. F. Manwell, J. G. McGowan, and A. L. Rogers, Wind Energy Explained: Theory, Design and Application. 2010.
H. Jang, D. Kim, Y. Hwang, I. Paek, S. Kim, and J. Baek, “Analysis of Archimedes spiral wind turbine performance by simulation and field test,” Energies, 2019, doi: 10.3390/en12244624.
DOI: http://dx.doi.org/10.12962/j25481479.v6i4.10623
Refbacks
- There are currently no refbacks.
| |||
|
|
|
|
P-ISSN: 2541-5972
E-ISSN: 2548-1479
IJMEIR journal published by Department of Marine Engineering, Faculty of Marine Technology, Institut Teknologi Sepuluh Nopember Surabaya Indonesia under licenced Creative Commons Attribution-ShareAlike 4.0 International Licence. Based on https://iptek.its.ac.id/index.php/ijmeir/