RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE

Due to the uneven distribution of flow velocity when the water flows in the middle section of the bidirectional flow guide device, affect the power generation efficiency of the horizontal axis turbine. By studying the blade radius and installation position of the turbine inside the guide device, imp...

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Main Authors: ZHANG Xin, LI GuoFu
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2022-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.05.05
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author ZHANG Xin
LI GuoFu
author_facet ZHANG Xin
LI GuoFu
author_sort ZHANG Xin
collection DOAJ
description Due to the uneven distribution of flow velocity when the water flows in the middle section of the bidirectional flow guide device, affect the power generation efficiency of the horizontal axis turbine. By studying the blade radius and installation position of the turbine inside the guide device, improve the power generation efficiency of the turbine inside the two-way guide device in the two-way water flow. First, using Fluent to obtain the flow velocity distribution curve of the vertical section of the center of the diversion device. By means of numerical analysis, established the mathematical model of velocity distribution, and calculated the optimal blade radius. Then, by studying the variation law of flow velocity distribution in the vertical direction, obtained the optimal blade installation position. Finally, through the drag experiment, obtained the periodic power generation under the bidirectional water flow. The research results show that when the blade radius is within the linear range of the flow velocity distribution, the flow velocity of the rotating surface of the turbine blade is larger, and the flow velocity of the rotating surface of the turbine blade increases significantly as the blade installation position decreases. When the water flow velocity is 1 m/s, after adjusting the blade radius and installation position of the turbine, the power generation of the turbine is increased by 72% compared with the previous one, and the power generation by the bare blade is increased by 150%.
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spelling doaj.art-8408f79cb6984ec6a243adadef6e52ea2025-01-15T02:39:15ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692022-01-01441049105631951165RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICEZHANG XinLI GuoFuDue to the uneven distribution of flow velocity when the water flows in the middle section of the bidirectional flow guide device, affect the power generation efficiency of the horizontal axis turbine. By studying the blade radius and installation position of the turbine inside the guide device, improve the power generation efficiency of the turbine inside the two-way guide device in the two-way water flow. First, using Fluent to obtain the flow velocity distribution curve of the vertical section of the center of the diversion device. By means of numerical analysis, established the mathematical model of velocity distribution, and calculated the optimal blade radius. Then, by studying the variation law of flow velocity distribution in the vertical direction, obtained the optimal blade installation position. Finally, through the drag experiment, obtained the periodic power generation under the bidirectional water flow. The research results show that when the blade radius is within the linear range of the flow velocity distribution, the flow velocity of the rotating surface of the turbine blade is larger, and the flow velocity of the rotating surface of the turbine blade increases significantly as the blade installation position decreases. When the water flow velocity is 1 m/s, after adjusting the blade radius and installation position of the turbine, the power generation of the turbine is increased by 72% compared with the previous one, and the power generation by the bare blade is increased by 150%.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.05.05Tidal powerVelocity distributionLeaf blade radiusInstallation positionPower generation
spellingShingle ZHANG Xin
LI GuoFu
RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
Jixie qiangdu
Tidal power
Velocity distribution
Leaf blade radius
Installation position
Power generation
title RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
title_full RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
title_fullStr RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
title_full_unstemmed RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
title_short RESEARCH ON BLADE RADIUS AND INSTALLATION POSITION OF BI-DIRECTIONAL DIVERSION DEVICE
title_sort research on blade radius and installation position of bi directional diversion device
topic Tidal power
Velocity distribution
Leaf blade radius
Installation position
Power generation
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2022.05.05
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AT liguofu researchonbladeradiusandinstallationpositionofbidirectionaldiversiondevice