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BIO-INSPIRED WIND ENERGY HARVESTER

机译:生物启发的风能收割机

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Engineers and designers often mimic mechanisms found in nature to accomplish a specific task. This concept was applied to wind power generation to simplify and reduce cost of the HAWT design. The advantage of the flapping wing design lies in the additional power generated by leading edge vortices. It has previously been demonstrated by others that a flapping wing section undergoing simultaneous, coordinated heaving and pitching is capable of extracting energy from an oncoming flow using the CFD code FLUENT. The encouraging results suggest that efficiencies as high as 36.3% are achievable with such a system with the strongest influence on efficiency being reduced heaving amplitude, H/c, pitching amplitude, 9, and reduced frequency, f~*. The suggested values of these motion parameters for optimal performance was found to be H/c≈1, θ=73°, and f~*≈0.15. Hence, an adjustable flapping wing energy extraction device was designed in accordance with these parameters. Preliminary testing has demonstrated the effective operation of the device over a range of Reynolds numbers in a wind tunnel.
机译:工程师和设计师经常模仿自然界发现的机制来完成特定任务。该概念被应用于风力发电,以简化并降低HAWT设计的成本。襟翼设计的优势在于前缘涡旋产生的额外动力。先前已被其他人证明,同时,协调起伏和俯仰的襟翼部分能够使用CFD代码FLUENT从迎面而来的气流中提取能量。令人鼓舞的结果表明,使用这样的系统可以实现高达36.3%的效率,而对效率影响最大的是降低的起伏幅度H / c,俯仰幅度9和降低的频率f〜*。这些运动参数的最佳性能建议值为H /c≈1,θ= 73°,f〜*≈0.15。因此,根据这些参数设计了可调节的襟翼能量提取装置。初步测试表明,该设备在风洞中一定范围的雷诺数下均可有效运行。

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