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Technical Data Package and Final Report: Team 16028: System and Method for Air Velocity Generated Electrical Power

机译:技术数据包和最终报告:团队16028:风速产生的电能的系统和方法

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摘要

This report is for an optimized method and system for air velocity generated electrical power. The system will be placed in either residential or commercial Heating Ventilation and Air Conditioning (HVAC) systems, and the blades will be oriented in such a way that they rotate about an axis transverse to the flow of air. The blades will spin a turbine that will harness the energy from the passing air and convert it into electricity. The electricity is generated as AC power by the alternator, which is then rectified to DC power and will be directed either to an energy consuming device in the facility, or an energy storage device.udDuring the course of this senior design project three different blade designs were tested in simulation and experimentally. A trade study was run and used to determine the best permanent magnet alternator for the system. An aluminum cover was fabricated and designed to minimize turbulence. The blade designs were tested using an electrical load test and an air velocity evaluation. From this evaluation, the system was determined to produce a 1% energy recovery.
机译:该报告是针对风速产生的电力的优化方法和系统。该系统将放置在住宅或商用加热通风和空调(HVAC)系统中,并且叶片的方向应使其绕垂直于气流的轴旋转。叶片将使涡轮旋转,该涡轮将利用通过的空气中的能量并将其转化为电能。交流发电机将电能产生为交流电,然后将其整流为直流电,并将其导向设施中的能耗设备或储能设备。 ud在此高级设计项目过程中,使用了三个不同的叶片设计经过仿真和实验测试。进行了一项贸易研究,并用来确定该系统的最佳永磁交流发电机。制造并设计了铝盖,以最大程度地减少湍流。使用电负载测试和风速评估来测试叶片设计。根据该评估,确定该系统产生1%的能量回收率。

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