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Polycarbonate Bladed Highway Wind Turbine: A Case Study

机译:聚碳酸酯叶片高速公路风力涡轮机:一个案例研究

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In the past decade, the energy demand has increased significantly in line with population rise. This increase is rapidly leading to depletion of conventional resources. Consequently, the leading countries are forced to combine bigger shares of renewable energy (RE) into their energy plans than the ones they already have. This scenario has enlightened some RE technologies such as; Solar Photovoltaic technology (PV), Concentrated Solar Power (CSP), Biomass, and Wind Energy. In the present work, one of the novel applications of wind energy is developed and studied experimentally. The main goal of this new application is to utilize the aerodynamic energy loss generated by moving vehicles; high-speed moving vehicles can produce strong wakes which contain considerable amount of localized wind energy. In the current work, airport road, Amman, Jordan was the selected site for wind energy assessment. A full site assessment including wind velocity, direction, and power content associated with wind speed from moving vehicles was conducted. The proposed system is not only capable of utilizing power from moving vehicles, but is also designed to have a relatively low cut-in wind speed to generated electricity from natural wind. The rotor of the experiment prototype was fully made of Polycarbonate sheets, owing to their light weight and high resilience against fatigue. The design of rotor is the Banki wind turbine, which includes multiple blades to harvest the maximum amount of kinetic energy. In results, the turbine featured a maximum power coefficient of 0.00924 and a cut in wind speed of 6.29 m/s. Furthermore, the turbine features a low starting torque and a rigid structure. These, among many other characteristics, indicated that the proposed system has a good performance in comparison with other configurations of vertical axis wind turbines.
机译:在过去的十年中,能源需求符合人口涨幅大幅增加。这种增加迅速导致常规资源的消耗。因此,领先的国家被迫将更大的可再生能源股份(重新)与他们已经拥有的能源计划相结合。这种情况已经开明了一些技术,如;太阳能光伏技术(PV),集中太阳能(CSP),生物质和风能。在目前的工作中,通过实验开发和研究了风能的新颖应用之一。这种新应用的主要目标是利用移动车辆产生的空气动力学能量损失;高速移动车辆可以产生强烈的唤醒,其中包含相当数量的局部风能。在目前的工作中,安曼机场路,约旦是风能评估所选网站。进行了包括来自移动车辆的风速,方向和与风速相关的风速,方向和电力内容的完整站点评估。所提出的系统不仅能够利用来自移动车辆的电力,而且还被设计成具有相对低的削减风速,以产生来自自然风的电力。由于它们的重量轻和疲劳,实验原型的转子完全由聚碳酸酯板制成。转子的设计是Banki风力涡轮机,其包括多个叶片来收集最大的动能量。在结果中,涡轮机采用最大功率系数为0.00924,风速减小为6.29米/秒。此外,涡轮机具有低启动扭矩和刚性结构。其中,其中许多其他特征表明,与垂直轴风力涡轮机的其他配置相比,所提出的系统具有良好的性能。

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