Project |
Owner/Contractor |
Turbine type & Capacity |
Year/Completion |
Pangyo SHP |
K-Water Resources Corp. LS IS" |
Kaplan , 2 x 200kW |
2013. 03 |
Juam Balancing Reservoir Dam SHP |
K-Water Resources Corp. |
Horizontal axis kaplan type
Tubular , 1 x 55kW |
2010. 06 |
Save 4 River Proj.
Youngsan River
Chooksan Weir SHP |
Iksan Regional Const. &
Management Admin.
Samsung Heavy Ind. |
Kaplan, 2 x 610kW |
2012. 06 |
Save 4 River Proj.
Nakdong River
Gumi Weir SHP |
K-Water, Posco E&C |
Kaplan, 2 x 1,660kW |
2011. 01 |
Save 4 River Proj.
Han River
Gangchun Weir SHP |
K-Water, Hyundai E&C |
Kaplan, 3 x 1,860kW |
2012. 04 |
Save 4 River Proj.
Keum Liver
Sejong Weir SHP |
Daejeon Regional Const. & Management Admin.
Daewoo E&C |
Kaplan, 3 x 810kW |
2012. 07 |
Save 4 River Proj.
Keum Liver
Baekje Weir SHP |
Daejeon Regional Const. & Management Admin.
GS E&C |
Kaplan, 4 x 720kW |
2012. 07 |
Save 4 River Proj.
Keum Liver
Gongjoo Weir SHP |
Daejeon Regional Const. & Management Admin.
SK E&C |
Kaplan, 2 x 1,670kW |
2013. 05 |
Jungwoo Reservoir
SHP Project |
Korea Rural Community
Corporation (Jungeup Br.) |
Tubular, 1 x 80kW |
2013. 05 |
Nakduk Reservoir
SHP Project |
Korea Rural Community
Corporation (Sunchang Br.) |
Tubular, 1 x 75kW |
2013. 12 |
Kosoo Dist. SHP Proj. |
Korea Rural Community
Corporation (Kochang Br.) |
Semi Kaplan, 1 x 100kW |
2014. 05 |
Seopo Dist. SHP Proj. |
Korea Rural Community
Corporation (Kumkang Br.) |
Semi Kaplan, 1 x 100kW |
2014. 05 |
Daejeon Sewage Terminal SHP |
Daejeon Regional Const. & Management Admin.
SK E&C |
Kaplan type Tubular, 2 x 50kW |
2014. 05 |
Reference for Research Project
Project |
Employer |
Contents |
Year |
Development of SHP
Turbine for Desalination
Plant |
Korea Evaluation Institute
of Industrial Technology |
1. Design & Mfg. Of
5kW Pelton turbine
2. Design & Mfg of 50 kW
Francis turbine |
2012. 09
2014. 09 |
Design of Model turbine
for Namgan HPP |
K-Water Resources Corp.
Hyndai Heavy Ind. |
Design & Mfg of model
turbine for Namgan HPP |
2013. 12 |
Improvement of
Turbulence Flow |
Korea Institute of Energy
Technology Evaluation &
Planning |
Efficiency Increase by 10%
through improvement of
turbulence flow |
2015. 10 |
|