Computational Investigation of Vertical Axis Wind Turbine in Hydrogen Gas Generation Using PEM Electrolysis

IF 0.7 4区 材料科学 Q4 ELECTROCHEMISTRY Journal of New Materials For Electrochemical Systems Pub Date : 2022-08-31 DOI:10.14447/jnmes.v25i3.a03
A. Agarwal
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Abstract

Both offshore wind and hydrogen generation are increasingly seen as central to global decarbonization. The objective of current research is to investigate the effect of wind turbine height of Vertical Axis Wind Turbine (VAWT) on hydrogen generation. The numerical investigation of VAWT is conducted using techniques of Computational Fluid Dynamics. The VAWT design is developed in Solidworks design software and CFD analysis is conducted using ANSYS CFX software. The CFD analysis conducted on VAWT aided to determine the torque generated from it at 10m/s wind velocity determining the system impacts and ability of electrolyzer technology to accommodate the varying input from wind turbine. The research findings have shown that height of VAWT blade has significant effect on power generation. The power generation from VAWT increases with increase in blade height. The maximum hydrogen mass is generated for 850mm height wind turbine i.e., 2.09Kg. The external wind flow conditions have significant effect on power generation from VAWT and therefore the effect of varying air flow conditions needs to be investigated.
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垂直轴风力机PEM电解制氢计算研究
海上风能和氢气发电越来越被视为全球脱碳的核心。本研究的目的是研究垂直轴风力机(VAWT)的风力机高度对制氢的影响。利用计算流体力学技术对VAWT进行了数值研究。采用Solidworks设计软件进行VAWT设计,利用ANSYS CFX软件进行CFD分析。对VAWT进行的CFD分析有助于确定其在10m/s风速下产生的扭矩,从而确定系统影响以及电解槽技术适应风力涡轮机不同输入的能力。研究结果表明,VAWT叶片高度对发电有显著影响。随着叶片高度的增加,VAWT的发电量也随之增加。850mm高度风力机产生的最大氢气质量为2.09Kg。外部风流条件对VAWT发电影响较大,因此需要研究不同风流条件对VAWT发电的影响。
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来源期刊
Journal of New Materials For Electrochemical Systems
Journal of New Materials For Electrochemical Systems ELECTROCHEMISTRY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
1.90
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: This international Journal is intended for the publication of original work, both analytical and experimental, and of reviews and commercial aspects related to the field of New Materials for Electrochemical Systems. The emphasis will be on research both of a fundamental and an applied nature in various aspects of the development of new materials in electrochemical systems.
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