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Numerical Simulation on Hybrid Savonius Turbine with NACA-Airfoils as H-rotor Blades

机译:NACA翼型作为H转子叶片的Savonius混合动力水轮机的数值模拟

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The demand for green and clean energy is increasing all over the world. Vertical Axial Wind Turbine (VAWT) is utilized to convert mechanical energy into electrical energy, which is commonly used in urban and residential areas. The combination of Darrieus and Savonius rotors is notified as a hybrid wind turbine. It has the Darrieus blades form as the airfoils, and the Savonius blades placed in the middle. Darrieus rotor has high power efficiency, but it is difficult to create a start-rotating rotation, as the inverse of the Savonius rotor, which is better self-starting capability, but it has low efficiency. The aims of this study is to compare the performance of the hybrid turbine with two diffferent configurations. Two shapes of H-Darrieus airfoils were investigated, which were the symmetric NACA-0018 airfoil and the asymmetric NACA-2415 airfoil. Both configurations were tested on varying tip speed ratios of 0.5 to 4 and wind velocities of 4 m/sec and 7 m/sec. Unsteady, two-dimensional numerical simulations were performed. A moving mesh was applied for the rotating part. The simulation was carried out by using a shear stress transport (SST), $pmb{k}-omega$ turbulent model. From the simulation results, the flow contours, coefficient of moment and coefficient of power are extracted. It is found that at the optimum TSR of 2.75, the maximum $pmb{C}_{pmb{P}}$ extracted for the hybrid turbine with the NACA-2415 profile is 36.62% and 40.9%, at a wind speed of 4 m/sec and 7 m/sec, respectively. Meanwhile, the hybrid turbine with the NACA-0018 profile has the maximum $pmb{C}_{pmb{P}}$ of 35.14% (optimum TSR of 2.75) and 37.42% (optimum TSR of 2.5) at wind speeds of 4 m/sec and 7 m/sec, respectively. Furthermore, the minimum value of the coefficient of moment for varying azimuth angle is approximately zero, suggesting better self-starting capability of the hybrid turbine.
机译:在世界范围内,对绿色和清洁能源的需求正在增长。垂直轴流式风力涡轮机(VAWT)用于将机械能转换为电能,这在城市和住宅区通常使用。 Darrieus和Savonius转子的组合被通知为混合风力涡轮机。它的机翼是Darrieus叶片,中间是Savonius叶片。 Darrieus转子具有较高的功率效率,但是很难实现启动旋转旋转,因为Savonius转子的逆向旋转具有更好的自启动能力,但效率却很低。这项研究的目的是比较两种不同配置的混合动力涡轮机的性能。研究了H-Darrieus翼型的两种形状,即对称的NACA-0018翼型和不对称的NACA-2415翼型。两种配置均在0.5到4的可变尖端速度比以及4 m / sec和7 m / sec的风速下进行了测试。进行了不稳定的二维数值模拟。将移动的网格应用于旋转部分。该模拟是通过使用剪切应力传输(SST)进行的, $ \ pmb {k}- \ omega $ 湍流模型。从仿真结果中,提取出流动轮廓,力矩系数和功率系数。发现在2.75的最佳TSR时,最大 $ \ pmb {C} _ {\ pmb {P}} $ 在风速为4 m / sec和7 m / sec的情况下,具有NACA-2415轮廓的混合动力涡轮的最大风量分别为36.62%和40.9%。同时,具有NACA-0018轮廓的混合动力涡轮机具有最大的 $ \ pmb {C} _ {\ pmb {P}} $ 风速分别为4 m / sec和7 m / sec时分别为35.14%(最佳TSR为2.75)和37.42%(最佳TSR为2.5)。此外,用于变化方位角的力矩系数的最小值近似为零,这表明混合涡轮机具有更好的自启动能力。

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