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波力発電用衝動タービンの実海域試験

発表形態:
原著論文
主要業績:
主要業績
単著・共著:
共著
発表年月:
2008年12月
DOI:
会議属性:
指定なし
査読:
有り
リンク情報:

日本語フィールド

著者:
高尾 学;鈴木 正己;佐藤 栄治;永田 修一;豊田 和隆;瀬戸口 俊明
題名:
波力発電用衝動タービンの実海域試験
発表情報:
ターボ機械 巻: 36 号: 12 ページ: 766772
キーワード:
概要:
A sea trial of wave power plant using an impulse turbine for bi-directional airflow has been carried out at Niigata-nishi Port, in order to demonstrate usefulness of the turbine. The wave power plant using OWC has been installed at the side of a breakwater and has an air chamber with a sectional area of 4m2(=2m x 2m). The impulse turbine used in the sea trial has fixed guide vanes both upstream and downstream, and these geometries are symmetrical with respect to the rotor centerline in order to rotate in a single direction in bi-directional airflow generated by OWC. As a result, it was concluded that total conversion efficiency of the plant using the impulse turbine is superior to Wells turbine which is the mainstream of turbine for wave energy conversion. Further, the performance of wave power plant was predicted by numerical analysis and it was compared to the experimental data.
抄録:

英語フィールド

Author:
TAKAO Manabu;SUZUKI Masami;SATO Eiji;NAGATA Shuichi;TOYOTA Kazutaka;SETOGUCHI Toshiaki
Title:
A Sea Trial of Wave Power Plant with Impulse Turbine
Announcement information:
Turbomachinery Vol: 36 Issue: 12 Page: 766772
An abstract:
A sea trial of wave power plant using an impulse turbine for bi-directional airflow has been carried out at Niigata-nishi Port, in order to demonstrate usefulness of the turbine. The wave power plant using OWC has been installed at the side of a breakwater and has an air chamber with a sectional area of 4m2(=2m x 2m). The impulse turbine used in the sea trial has fixed guide vanes both upstream and downstream, and these geometries are symmetrical with respect to the rotor centerline in order to rotate in a single direction in bi-directional airflow generated by OWC. As a result, it was concluded that total conversion efficiency of the plant using the impulse turbine is superior to Wells turbine which is the mainstream of turbine for wave energy conversion. Further, the performance of wave power plant was predicted by numerical analysis and it was compared to the experimental data.


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