The cross flow turbine is economical because of its simple structure. For remote rural region, there are needs for a more simple structure and very low head cross flow turbines. However, in this kind of locations, the water from upstream always flows into the turbine with some other materials such as sand and pebble. These materials will be damage to the runner blade and shorten the turbine lifespan. Therefore, there is a need to develop a new type of cross flow turbine for the remote rural region where there is availability of abundant resources. The new design of the cross flow turbine has an inlet open duct, without guide vane and nozzle to simplify the structure. However, the turbine with inlet open duct and very low head shows relatively low efficiency. Therefore, the purpose of this study is to optimize the shape of the turbine inlet to improve the efficiency, and investigate the internal flow of a very low head cross flow turbine. There are two steps to optimize the turbine inlet shape. Firstly, by changing the turbine open angle along with changing the turbine inlet open duct bottom line (IODBL) location to investigate the internal flow. Secondly, keeping the turbine IODBL location at the maximum efficiency achieved at the first step, and changing the turbine IODBL angle to improve the performance. The result shows that there is a 7.4% of efficiency improvement by optimizing turbine IODBL location (open angle), and there is 0.3% of efficiency improvement by optimizing the turbine IODBL angle.
[1]
김수진,et al.
추력 및 효율 향상을 위한 Double Hydrofoil 움직임에 대한 수치해석 연구
,
2014
.
[2]
Bent Sørensen,et al.
Renewable Energy Conversion, Transmission, and Storage
,
2007
.
[3]
Toshiaki Kanemoto,et al.
Effect of inner guide on performances of cross flow turbine
,
2012
.
[4]
정대석,et al.
고정 커플링의 오프셋을 갖는 발전용 가스터빈-발전기의 동적 응답해석
,
2014
.
[5]
Fred Merryfield,et al.
The Banki water turbine
,
1949
.
[6]
Toshiaki Kanemoto,et al.
Guide Vane with Current Plate to Improve Efficiency of Cross Flow Turbine
,
2013
.
[7]
Young-Ho Lee,et al.
Air Layer Effect on the Performance Improvement of a Cross-Flow Hydro Turbine
,
2010
.