Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine

Marine current power is a kind of renewable energy that has attracted increasing attention because of its abundant reserves, high predictability, and consistency. A marine current turbine is a large rotating device that converts the kinetic energy of the marine current into mechanical energy. As a s...

Full description

Bibliographic Details
Main Authors: Donghai Zhou, Xiaojing Sun
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/14/4087
id doaj-19df652669434b60a88e3be677d6e156
record_format Article
spelling doaj-19df652669434b60a88e3be677d6e1562021-07-23T13:38:30ZengMDPI AGEnergies1996-10732021-07-01144087408710.3390/en14144087Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current TurbineDonghai Zhou0Xiaojing Sun1School of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai 200093, ChinaSchool of Energy and Power Engineering, University of Shanghai for Science and Technology, Shanghai 200093, ChinaMarine current power is a kind of renewable energy that has attracted increasing attention because of its abundant reserves, high predictability, and consistency. A marine current turbine is a large rotating device that converts the kinetic energy of the marine current into mechanical energy. As a straight-bladed vertical axis marine current turbine (VAMCT) has a square or rectangular cross-section, it can thus have a larger swept area than that of horizontal axis marine current turbines (HAMCT) for a given diameter, and also have good adaptability in shallow water where the turbine size is limited by both width and depth of a channel. However, the low energy utilization efficiency of the VAMCT is the main bottleneck that restricts its application. In this paper, two-dimensional numerical simulations were performed to investigate the effectiveness of an upstream deflector on improving performance of the straight-bladed (H-type) marine current turbine. The effects of various key geometrical parameters of the deflector including position, length, and installation angle on the hydrodynamic characteristics of the VAMCT were then systematically analyzed in order to explore the mechanism underlying the interaction between the deflector and rotor of a VAMCT. As a result, the optimal combination of geometrical parameters of the deflector by which the maximum energy utilization efficiency was achieved was a 13.37% increment compared to that of the original VAMCT. The results of this work show the feasibility of the deflector as a potential choice for improving the energy harvesting performance of a VAMCT with simple structure and easy implementation.https://www.mdpi.com/1996-1073/14/14/4087marine current powerdeflectorH-type vertical axis marine current turbineenergy conversion efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Donghai Zhou
Xiaojing Sun
spellingShingle Donghai Zhou
Xiaojing Sun
Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
Energies
marine current power
deflector
H-type vertical axis marine current turbine
energy conversion efficiency
author_facet Donghai Zhou
Xiaojing Sun
author_sort Donghai Zhou
title Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
title_short Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
title_full Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
title_fullStr Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
title_full_unstemmed Influences of Geometrical Parameters of Upstream Deflector on Performance of a H-Type Vertical Axis Marine Current Turbine
title_sort influences of geometrical parameters of upstream deflector on performance of a h-type vertical axis marine current turbine
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-07-01
description Marine current power is a kind of renewable energy that has attracted increasing attention because of its abundant reserves, high predictability, and consistency. A marine current turbine is a large rotating device that converts the kinetic energy of the marine current into mechanical energy. As a straight-bladed vertical axis marine current turbine (VAMCT) has a square or rectangular cross-section, it can thus have a larger swept area than that of horizontal axis marine current turbines (HAMCT) for a given diameter, and also have good adaptability in shallow water where the turbine size is limited by both width and depth of a channel. However, the low energy utilization efficiency of the VAMCT is the main bottleneck that restricts its application. In this paper, two-dimensional numerical simulations were performed to investigate the effectiveness of an upstream deflector on improving performance of the straight-bladed (H-type) marine current turbine. The effects of various key geometrical parameters of the deflector including position, length, and installation angle on the hydrodynamic characteristics of the VAMCT were then systematically analyzed in order to explore the mechanism underlying the interaction between the deflector and rotor of a VAMCT. As a result, the optimal combination of geometrical parameters of the deflector by which the maximum energy utilization efficiency was achieved was a 13.37% increment compared to that of the original VAMCT. The results of this work show the feasibility of the deflector as a potential choice for improving the energy harvesting performance of a VAMCT with simple structure and easy implementation.
topic marine current power
deflector
H-type vertical axis marine current turbine
energy conversion efficiency
url https://www.mdpi.com/1996-1073/14/14/4087
work_keys_str_mv AT donghaizhou influencesofgeometricalparametersofupstreamdeflectoronperformanceofahtypeverticalaxismarinecurrentturbine
AT xiaojingsun influencesofgeometricalparametersofupstreamdeflectoronperformanceofahtypeverticalaxismarinecurrentturbine
_version_ 1721288645015502848