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Numerical and Experimental Investigation of Aerodynamic Performance of Vertical-Axis Wind Turbine Models with Various Blade Designs 被引量:1
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作者 Mosfequr Rahman Travis E. Salyers +3 位作者 Adel El-Shahat Marcel Ilie Mahbub Ahmed Valentin Soloiu 《Journal of Power and Energy Engineering》 2018年第5期26-63,共38页
Due to the importance and advantages of Vertical-axis wind turbines (VAWTs) over traditional horizontal-axis wind turbines (HAWTs), this paper is implemented. Savonius turbines with drag-based rotors are adopted from ... Due to the importance and advantages of Vertical-axis wind turbines (VAWTs) over traditional horizontal-axis wind turbines (HAWTs), this paper is implemented. Savonius turbines with drag-based rotors are adopted from the two more extensive arrangements of vertical wind turbines because of their advantages. In this paper, six diverse rotor plans with measure up to cleared regions are analyzed with exploratory wind burrow testing and numerical reenactments. These proposed models incorporate a conventional Savonius with two different edges criteria and 90 degree helical bend models with two, three and four sharp edges. The models were designed using SolidWorks software then the physical models were 3D printed for testing. A subsonic open-sort wind burrow was utilized for Revolution per Minute (RPM) and torque estimation over a scope of wind speeds. ANSYS Fluent reenactments were utilized for dissecting streamlined execution by using moving reference outline and sliding lattice display methods. A 3-dimensional and transient strategy was utilized for precisely tackling torque and power coefficients. The five new rotor geometries have important advantages such as making a focal point of weight advance from the hub of revolution and causing more noteworthy torque on the turbine shaft contrasted with the customary Savonius turbine. Our new models with the names of CC model and QM model display cross-areas lessen the aggregate scope of negative torque on the edges by 20 degrees, contrasted with the customary Savonius demonstrate. Helical plans are better spread the connected torque over a total transformation resulting in positive torque over every single operational point. Moreover, helical models with 2 and 3 cutting edges have the best self-starting ability in low wind speeds. Helical VAWT with 3 edges starts revolution of 35 RPM at only 1.4 m/s wind speed under no generator stacking. The most noteworthy power coefficient is accomplished, both tentatively and numerically, by the helical VAWT with 2 sharp edges. 展开更多
关键词 vertical-axis wind turbine vawt SAVONIUS HELICAL wind Tunnel Computational Fluid Dynamics (CFD) ANSYS Fluent
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Perspectives of Vertical Axis Wind Turbines in Cluster Configurations
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作者 Ryan Randall Chunmei Chen +1 位作者 Mesfin Belayneh Ageze Muluken Temesgen Tigabu 《Fluid Dynamics & Materials Processing》 EI 2024年第12期2657-2691,共35页
Vertical Axis Wind Turbines(VAWTs)offer several advantages over horizontal axis wind turbines(HAWTs),including quieter operation,ease of maintenance,and simplified construction.Surprisingly,despite the prevailing beli... Vertical Axis Wind Turbines(VAWTs)offer several advantages over horizontal axis wind turbines(HAWTs),including quieter operation,ease of maintenance,and simplified construction.Surprisingly,despite the prevailing belief that HAWTs outperform VAWTs as individual units,VAWTs demonstrate higher power density when arranged in clusters.This phenomenon arises from positive wake interactions downstream of VAWTs,potentially enhancing the overall wind farm performances.In contrast,wake interactions negatively impact HAWT farms,reducing their efficiency.This paper extensively reviews the potential of VAWT clusters to increase energy output and reduce wind energy costs.A precise terminology is introduced to clarify ambiguous terms researchers use to quantify cluster parameters.While examining commonly studied and proposed VAWT cluster configurations,several aspects are discussed such as aerodynamic interactions,wake characteristics,structural dynamics,and performance metrics.Additionally,the current state-of-the-art and research gaps are critically described.The review also covers computational modeling,optimization techniques,advanced control strategies,machine learning applications,economic considerations,and the influence of terrain and application locations. 展开更多
关键词 Vertical axis wind turbines(vawts) cluster configuration wind farm wind energy performance enhancement
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Double Multiple Streamtube Model and Numerical Analysis of Vertical Axis Wind Turbine 被引量:2
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作者 Habtamu Beri Yingxue Yao 《Energy and Power Engineering》 2011年第3期262-270,共9页
The present paper contributes to the modeling of unsteady flow analysis of vertical axis wind turbine (VAWT). Double multiple streamtube (DSMT) model was applied for the performance prediction of straight bladed fixed... The present paper contributes to the modeling of unsteady flow analysis of vertical axis wind turbine (VAWT). Double multiple streamtube (DSMT) model was applied for the performance prediction of straight bladed fixed pitch VAWT using NACA0018 airfoil at low wind speed. A moving mesh technique was used to investigate two-dimensional unsteady flow around the same VAWT model with NACA0018 airfoil modified to be flexible at 150 from the main blade axis of the turbine at the trailing edge located about 70 % of the blade chord length using fluent solving Reynolds average Navier-strokes equation. The results obtained from DMST model and the simulation results were then compared. The result shows that the CFD simulation with airfoil modified has shown better performance at low tip speed ratios for the modeled turbine. 展开更多
关键词 wind turbine ACTUATOR DISK MOMENTUM Model STREAM Tube vawt CFD
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Dynamic Circulation Control for a Vertical Axis Wind Turbine using Virtual Solidity Matching 被引量:1
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作者 Jay P. Wilhelm Andrew C. Nix +2 位作者 Chad C. Panther Wade W. Huebsch James E. Smith 《Smart Grid and Renewable Energy》 2017年第4期99-113,共15页
Vertical Axis Wind Turbines (VAWTs) with fixed pitch blades have a limited power capture performance envelope as the Tip Speed Ratio (TSR) changes. Circulation Control (CC) has been proposed and simulated to possibly ... Vertical Axis Wind Turbines (VAWTs) with fixed pitch blades have a limited power capture performance envelope as the Tip Speed Ratio (TSR) changes. Circulation Control (CC) has been proposed and simulated to possibly increase power capture of a VAWT using constant CC jet momentum, but a practical method of minimizing CC usage has yet to be explored. In addition, VAWTs are typically limited in power capture performance either by a maximum peak at a small set of TSR or wide operating TSR at fractions of the peak performance based on the design solidity. Both the reduced jet usage and solidity limitation were addressed by developing a method of dynamically using CC to perform a virtual solidity change. The developed method described within this work used CC to change blade aerodynamics to specifically match a maximum performing static solidity or wake shape at a given TSR. Simulation results using an existing aerodynamics model indicated a significant reduction in the re-quired CC jet momentum compared to a constant CC system along with control over power capture for a CC-VAWT. 展开更多
关键词 CIRCULATION CONTROL Vertical Axis wind turbine vawt Flow CONTROL SOLIDITY MATCHING
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Structural Design Optimization of a Vertical Axis Wind Turbine for Seismic Qualification and Lightweight
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作者 Young-Hyu Choi Min-Gyu Kang 《World Journal of Engineering and Technology》 2016年第3期158-167,共10页
Recently, there is a growing interest in seismic qualification of ridges, buildings and mechanical equipment worldwide due to increase of accidents caused by earthquake. Severe earthquake can bring serious problems in... Recently, there is a growing interest in seismic qualification of ridges, buildings and mechanical equipment worldwide due to increase of accidents caused by earthquake. Severe earthquake can bring serious problems in the wind turbines and eventually lead to an interruption to their electric power supply. To overcome and prevent these undesirable problems, structural design optimization of a small vertical axis wind turbine has performed, in this study, for seismic qualification and lightweight by using a Genetic Algorithm (GA) subject to some design constraints such as the maximum stress limit, maximum deformation limit, and seismic acceleration gain limit. Also, the structural design optimizations were conducted for the four different initial design variable sets to confirm robustness of the optimization algorithm used. As a result, all the optimization results for the 4 different initial designs showed good agreement with each other properly. Thus the structural design optimization of a small vertical-axis wind turbine could be successfully accomplished. 展开更多
关键词 Small vertical-axis wind turbine Seismic Qualification Response Spectrum Analysis Structural Design Optimization Genetic Algorithm
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Effect of wind fluctuating on self-starting aerodynamics characteristics of VAWT 被引量:1
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作者 朱建阳 蒋林 赵慧 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期2075-2082,共8页
The present work deals with an investigation of the self-starting aerodynamic characteristics of VAWT under fluctuating wind. In contrast to the previous studies, the rotational speed of the turbine is not fixed, the ... The present work deals with an investigation of the self-starting aerodynamic characteristics of VAWT under fluctuating wind. In contrast to the previous studies, the rotational speed of the turbine is not fixed, the rotation of the turbine is determined by the dynamic interaction between the fluctuating wind and turbine. A weak coupling method is developed to simulate the dynamic interaction between the fluctuating wind and passive rotation turbine, and the results show that if the fluctuating wind with appropriate fluctuation amplitude and frequency, the self-starting aerodynamic characteristics of VAWT will be enhanced. It is also found that compared with the fluctuation amplitude, the fluctuation frequency of the variation in wind velocity is shown to have a minor effect on the performance of the turbine. The analysis will provide straightforward physical insight into the self-starting aerodynamic characteristics of VAWT under fluctuating wind. 展开更多
关键词 fluctuating wind vertical axis wind turbinevawt self-starting performance weak coupling method fluctuation amplitude and frequency
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Wind Tunnel Test and Numerical Computation on Ice Accretion on Blade Airfoil for Straight-bladed VAWT
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作者 LI Shengmao LI Yan +2 位作者 FENG Fang WANG Lijun CHI Yuan 《Journal of Northeast Agricultural University(English Edition)》 CAS 2010年第4期71-75,共5页
To invest the condition of ice accretion on the blade used for straight-bladed vertical axis wind turbine (SB-VAWT), wind tunnel tests were carried out on a blade with NACA0015 airfoil by using a small simple icing ... To invest the condition of ice accretion on the blade used for straight-bladed vertical axis wind turbine (SB-VAWT), wind tunnel tests were carried out on a blade with NACA0015 airfoil by using a small simple icing wind tunnel. Tests were carried out at some typical attack angles under different wind speeds and flow discharges of a water spray with wind. The icing shape and area on blade surface were recorded and measured, Then the numerical computation was carded out to calculate the lift and drag coefficients of the blade before and after ice accretion according to the experiment result, the effect of icing on the aerodynamic characteristics of blade were discussed. 展开更多
关键词 vertical axis wind turbine vawt straight-bladed ice accretion wind tunnel test numerical computation aerodynamic characteristic
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Effect of additional cylinders on power-extraction performance of a Savonius vertical-axis wind turbine
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作者 Yangyang YAN Jintao ZHANG +3 位作者 Junao SHE Wenhao LIU Jianghong DENG Jianyang ZHU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2023年第6期531-542,共12页
To improve the power-extraction performance of the Savonius vertical-axis wind turbine(S-VAWT),additional cylinders,which are used to control the fluid flow around the wind turbine blade,were introduced into the blade... To improve the power-extraction performance of the Savonius vertical-axis wind turbine(S-VAWT),additional cylinders,which are used to control the fluid flow around the wind turbine blade,were introduced into the blade design.In contrast to the traditional numerical method,a mathematical model in the form of a dynamical system was used in this study.A numerical calculation program that could effectively solve the equations of wind-induced rotation of S-VAWT was developed,and combined with the Taguchi experimental method to investigate the influence of additional cylinders on the power-extraction characteristics of the S-VAWT.The results showed that the additional cylinders have a significant impact on the power-extraction performance of the S-VAWT.At 4-m/s wind speed,the average power coefficient of the S-VAWT with additional cylinders is 15%higher than that of the conventional S-VAWT.After construction of the wind turbine prototype and power-extraction tests,the results showed that compared with a conventional S-VAWT,the output power was 29%higher for the S-VAWT with additional cylinders under the same particular conditions. 展开更多
关键词 Additional cylinders Taguchi experimental method Savonius vertical-axis wind turbine(S-vawt) Average power coefficient wind-induced rotation
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H-VAWT设计参数对其叶尖损失的影响
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作者 杨秋萍 席德科 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2018年第4期85-93,共9页
为了探讨在H-VAWT叶片上增加叶尖小翼或增大展弦比对风力机整体气动性能的作用和影响,计算和分析研究了不同设计参数对其叶尖损失的影响.首先以有限展长H-VAWT的气动性能为基准,将无限展长H-VAWT与之相比较所得到的气动性能的相对差值... 为了探讨在H-VAWT叶片上增加叶尖小翼或增大展弦比对风力机整体气动性能的作用和影响,计算和分析研究了不同设计参数对其叶尖损失的影响.首先以有限展长H-VAWT的气动性能为基准,将无限展长H-VAWT与之相比较所得到的气动性能的相对差值来分析设计参数—实度和翼型对其所生成的H-VAWT叶尖损失的影响,又通过比较不同展弦比所生成的H-VAWT的气动性能,分析总结了展弦比对H-VAWT叶尖损失改进的效果.结果表明:无论生成H-VAWT的设计参数(实度和翼型)如何,当H-VAWT工作在较高尖速比下(λ≥1.60),更适合使用改善叶尖损失的措施来改善H-VAWT的气动性能;当H-VAWT实度比较大(σ≥0.96)或生成H-VAWT的翼型较厚时,有必要增加叶尖小翼或加大叶片展弦比来减少叶尖损失的不利影响,改善H-VAWT气动性能;加大叶片展弦比对H-VAWT气动性能的改善是有限的,基于设计要求及其他几何参数的限制,H-VAWT展弦比在5≤μ≤20范围内较合适. 展开更多
关键词 H型垂直轴风力机 实度 翼型 展弦比 叶尖损失
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Analysis of Aerodynamic Load on Straight-bladed Vertical Axis Wind Turbine 被引量:6
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作者 Qing’an LI Takao MAEDA +3 位作者 Yasunari KAMADA Junsuke MURATA Toshiaki KAWABATA Kazuma FURUKAWA 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第4期315-324,共10页
This paper presents a wind tunnel experiment for the evaluation of energy performance and aerodynamic forces acting on a small straight-bladed vertical axis wind turbine(VAWT) depending on several values of tip speed ... This paper presents a wind tunnel experiment for the evaluation of energy performance and aerodynamic forces acting on a small straight-bladed vertical axis wind turbine(VAWT) depending on several values of tip speed ratio. In the present study, the wind turbine is a four-bladed VAWT. The test airfoil of blade is symmetry airfoil(NACA0021) with 32 pressure ports used for the pressure measurements on blade surface. Based on the pressure distributions which are acted on the surface of rotor blade measured during rotation by multiport pressure-scanner mounted on a hub, the power, tangential force, lift and drag coefficients which are obtained by pressure distribution are discussed as a function of azimuthally position. And then, the loads which are applied to the entire wind turbine are compared with the experiment data of pressure distribution. As a result, it is clarified that aerodynamic forces take maximum value when the blade is moving to upstream side, and become small and smooth at downstream side. The power and torque coefficients which are based on the pressure distribution are larger than that by torque meter. 展开更多
关键词 wind turbine wind Energy Straight-bladed vawt Tip Speed Ratio Pressure Distribution
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垂直轴风机功率增强的翼型与阵列优化
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作者 雷鸣 方辉 《中国海洋平台》 2024年第2期12-18,47,共8页
针对H型垂直轴风机(Vertical Axis Wind Turbine,VAWT),通过计算流体动力学(Computational Fluid Dynamics,CFD)模拟,将翼型设计与涡轮阵列相关联,对比分析多种翼型及不同阵列条件下VAWT的转矩系数C_(m)、功率系数C_(P)和平均功率参数... 针对H型垂直轴风机(Vertical Axis Wind Turbine,VAWT),通过计算流体动力学(Computational Fluid Dynamics,CFD)模拟,将翼型设计与涡轮阵列相关联,对比分析多种翼型及不同阵列条件下VAWT的转矩系数C_(m)、功率系数C_(P)和平均功率参数Ω。结果表明:与对称翼型相比,非对称翼型在高叶尖速比下功率系数较小,弯度效应可显著增大翼型在下风区的功率系数;在风场阵列中,三涡轮阵列优化后下风区涡轮功率显著提升,单涡轮功率可提升40%,风场整体功率提升约20%;针对海上牧场结构平面提出五涡轮阵列,优化后风场整体效率提升65%,单涡轮性能提升可达100%。研究成果对于提高深远海网箱系统功能与设计具有推动意义。 展开更多
关键词 垂直轴风机 计算流体动力学(Computational Fluid Dynamics CFD) 仿真 翼型 风场阵列
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Effects of Offset Blade on Aerodynamic Characteristics of Small-Scale Vertical Axis Wind Turbine 被引量:1
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作者 LI Yan ZHAO Shouyang +2 位作者 QU Chunming FENG Fang KOTARO Tagawa 《Journal of Thermal Science》 SCIE EI CAS CSCD 2019年第2期326-339,共14页
A new way of connecting blade to rotor shaft named offset blade method was proposed for straightbladed vertical axis wind turbine(SB-VAWT) in this study. In order to invest the efficiency of this method and effects of... A new way of connecting blade to rotor shaft named offset blade method was proposed for straightbladed vertical axis wind turbine(SB-VAWT) in this study. In order to invest the efficiency of this method and effects of main parameters including offset length and blade airfoil on improving the output power performance and static starting characteristics, numerical simulations and wind tunnel tests were carried out. Four kinds of blade airfoil including NACA0012, NACA0018, NACA0024 and S809 were selected to analyze the influence of blade thickness and symmetry on SB-VAWT with offset blade. Numerical simulations were firstly carried out on output power for the rotor with 6 kinds of offset length for each airfoil. Wind tunnel tests were also carried out to compare with the results of simulations. The flow fields of rotor with different offset lengths were simulated and the effects of offset blade were analyzed. The optimum offset length among all studied for output power performance was found. Furthermore, the static starting torque and aerodynamic force characteristics of the rotor with optimum offset length were researched. According to the results, appropriate offset length can improve the output power characteristics and smooth the fluctuations of the static torque during one rotational period. The best offset length varies with the airfoil. 展开更多
关键词 vertical axis wind turbine(vawt) OFFSET BLADE AIRFOIL numerical simulations wind tunnel tests
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Numerical simulation of icing effects on static flow field around blade airfoil for vertical axis wind turbine 被引量:2
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作者 Li Yan Chi Yuan +2 位作者 Han Yongjun Li Shengmao Tagawa Kotaro 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2011年第3期41-47,共7页
Icing on blade surface of the straight-bladed vertical axis wind turbine(SB-VAWT)set in cold regions is a serious problem.To study the performance effects of icing on SB-VAWT,numerical simulations were carried out on ... Icing on blade surface of the straight-bladed vertical axis wind turbine(SB-VAWT)set in cold regions is a serious problem.To study the performance effects of icing on SB-VAWT,numerical simulations were carried out on the ice accretion on NACA 0015 airfoil which was always used for blade airfoil of SB-VAWT by CFD methods based on 2D steady incompressible N-S Equation.The morphology and procedure of icing on blade airfoil were obtained under different wind speeds,attack angles of blade and water flow flux in wind.The static flow fields,especially the static pressure fields around blade airfoil with or without icing on it were computed.The aerodynamic characteristics including the lift and drag force coefficients of blade airfoil were also calculated.The results indicated that icing caused the static pressure field changed greatly and led to the increasing of drag force and reducing the aerodynamic performance. 展开更多
关键词 vertical axis wind turbine(vawt) ICING blade airfoil static flow field numerical simulation
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叶片后加小翼垂直轴风力机气动特性数值模拟 被引量:10
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作者 李岩 郑玉芳 +2 位作者 唐静 冯放 田川公太朗 《东北农业大学学报》 CAS CSCD 北大核心 2016年第7期76-81,共6页
为改善直线翼垂直轴风力机叶片周围流场特性,在叶片后部加设辅助小翼调整叶片尾流流场,利用数值模拟方法研究该风力机气动特性。以NACA0018翼型2叶片风力机为对象,辅助小翼与主叶片在同一在旋转圆周上,通过改变小翼与主叶片弦长比和安... 为改善直线翼垂直轴风力机叶片周围流场特性,在叶片后部加设辅助小翼调整叶片尾流流场,利用数值模拟方法研究该风力机气动特性。以NACA0018翼型2叶片风力机为对象,辅助小翼与主叶片在同一在旋转圆周上,通过改变小翼与主叶片弦长比和安装角调整小翼与主叶片位置。结果表明,小翼尺度与安装位置对直线翼垂直轴风力机气动特性影响较大,在低尖速比时辅助小翼可改善叶片尾流流场,提高风力机气动特性,功率系数在尖速比从0到获得最大功率系数之前均较不带小翼风力机有不同程度提高,当辅助小翼弦长比为0.4,相对夹角为14°时,对主叶片周围流场改善效果最显著,风力机获得最大功率系数尖速比提前至2.2附近。 展开更多
关键词 垂直轴风力机 辅助小翼 流动控制 数值模拟 气动特性
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圆台型聚风罩对垂直轴风力机起动性的影响 被引量:11
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作者 李岩 唐静 +1 位作者 田川公太朗 冯放 《东北农业大学学报》 CAS CSCD 北大核心 2016年第4期95-101,共7页
为提高直线翼垂直轴风力机自起动性能,设计可安装在风轮上下两端圆台型聚风罩,收集更大面积来流提高来流风速。针对聚风罩高度、倾角及距风轮距离等主要结构参数作二次正交旋转组合设计,利用三维数值模拟方法计算不同聚风罩结构参数条... 为提高直线翼垂直轴风力机自起动性能,设计可安装在风轮上下两端圆台型聚风罩,收集更大面积来流提高来流风速。针对聚风罩高度、倾角及距风轮距离等主要结构参数作二次正交旋转组合设计,利用三维数值模拟方法计算不同聚风罩结构参数条件下风力机起动力矩,对比分析优化聚风罩结构参数,可有效提升风力机起动力矩。通过分析聚风罩与风轮间流场变化,揭示聚风罩对风力机起动力矩影响机理。 展开更多
关键词 垂直轴风力机 聚风罩 圆台型 起动性 数值计算
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垂直轴风力机三维气动性能的数值模拟及分析 被引量:14
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作者 惠万馨 顾煜炯 +1 位作者 刘莎莎 王向志 《现代电力》 北大核心 2013年第1期85-89,共5页
为深入了解直叶片垂直轴风力机的气动性能,并为垂直轴风力机优化设计提供思路,采用Fluent中的滑移网格技术对垂直轴风力机的流场进行了三维数值模拟。文中分析了该垂直轴风力机风轮流场的变化、风轮同一时刻不同截面处的流场分布特点、... 为深入了解直叶片垂直轴风力机的气动性能,并为垂直轴风力机优化设计提供思路,采用Fluent中的滑移网格技术对垂直轴风力机的流场进行了三维数值模拟。文中分析了该垂直轴风力机风轮流场的变化、风轮同一时刻不同截面处的流场分布特点、同一叶片在一个周期内处于不同相位角时的速度分布特性,并利用力矩系数的监测值及相关计算公式得出该风力机的风能利用系数。得出了垂直轴风力机进入稳定状态后流场变化具有周期性,尾流区域不断变窄,流场分布与所处相位角有关等结论,并在分析的基础上提出了一种在结构上可能具有更优潜质的变形垂直轴风力机。 展开更多
关键词 垂直轴风力机 三维 数值模拟 气动性能 流场
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小型垂直轴风力发电机风轮效率的试验研究 被引量:6
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作者 张洛明 王巧红 +1 位作者 张楠 张向威 《中国机械工程》 EI CAS CSCD 北大核心 2009年第18期2186-2189,共4页
以提高效率为目的,对影响垂直轴风力发电机风轮效率的叶片曲率、数量及安装角进行了理论分析与试验研究,试验结果证明了理论分析的合理性。给出了采用弧形叶片、30°安装角及叶片数量为12时风轮效率较高的明确结论,为今后的深入研... 以提高效率为目的,对影响垂直轴风力发电机风轮效率的叶片曲率、数量及安装角进行了理论分析与试验研究,试验结果证明了理论分析的合理性。给出了采用弧形叶片、30°安装角及叶片数量为12时风轮效率较高的明确结论,为今后的深入研究打下了良好的基础。 展开更多
关键词 效率 垂直轴风力发电机 风轮 试验研究
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分布式能源系统垂直轴风机特性的数值模拟与分析 被引量:6
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作者 李争 高培峰 +2 位作者 孙甜甜 薛增涛 王群京 《电工技术学报》 EI CSCD 北大核心 2017年第11期155-163,共9页
研究了一种小型分布式能源系统用阻力型垂直轴风机(VAWT)的特性,在原有风机基础上,将风轮增加为两层。基于流体动力学(CFD)对风机性能进行计算,依据空气动力学原理,模拟风轮与空气的流固耦合作用,分析流场风速分布以及风机在不同旋转角... 研究了一种小型分布式能源系统用阻力型垂直轴风机(VAWT)的特性,在原有风机基础上,将风轮增加为两层。基于流体动力学(CFD)对风机性能进行计算,依据空气动力学原理,模拟风轮与空气的流固耦合作用,分析流场风速分布以及风机在不同旋转角度下的综合受力情况,根据转矩特性,在Matlab中建立风轮的数学模型,然后使用最大功率跟踪控制方法,建立风机发电系统的数学模型,从而仿真得到发电机的电压、电流等发电特性曲线。最后,与实测数据进行对比,验证了数值仿真和分析的正确性,为今后该类风机结构优化设计和效率提升提供了借鉴和参考。 展开更多
关键词 分布式能源系统 垂直轴风力机 风力发电 流体动力学 数值仿真
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基于滑移网格的H型垂直轴动态气动特性分析 被引量:6
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作者 高伟 李春 +1 位作者 叶舟 聂佳斌 《流体机械》 CSCD 北大核心 2013年第10期36-40,共5页
垂直轴风力机的气动特性非常复杂,采用工程气动模型会有较大误差,因而本文针对NACA0012翼型,基于滑移网格技术,并选用Spalart-Allmaras方程湍流模型和基于压力的Simple算法对H行垂直轴风轮流场进行瞬态CFD计算,整个计算结果通过了严格... 垂直轴风力机的气动特性非常复杂,采用工程气动模型会有较大误差,因而本文针对NACA0012翼型,基于滑移网格技术,并选用Spalart-Allmaras方程湍流模型和基于压力的Simple算法对H行垂直轴风轮流场进行瞬态CFD计算,整个计算结果通过了严格的网格数和计算区域验证。同时,本文通过对流场的分析,获得了风力机的动态失速与升阻力系数等气动特性,计算结果对H轴风力机的设计与开发具有一定理论价值。 展开更多
关键词 垂直轴风轮 动态失速 气动特性 计算流体力学
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垂直轴风力机应用概况及其展望 被引量:14
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作者 姚英学 汤志鹏 《现代制造工程》 CSCD 北大核心 2010年第3期136-139,144,共5页
水平轴风力机是当今应用最广的一种风力机,垂直轴风力机也有着自身优越的性能,并越来越被人们所重视。介绍垂直轴风力发电机与水平轴风力发电机的优缺点,以及垂直轴风力机的最新应用及其发展趋势。
关键词 风能 水平轴风力发电机 垂直轴风力发电机 对比 最新应用 趋势
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