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Wind Energy Conversion Efficiency Limit

机译:风能转换效率极限

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The momentum analysis of Sharpe [3] is considered further. It is shown that the maximum wind energy conversion efficiency limit, or the Betz limit of 59.3%, deduced from conventional actuator disc theory is the limiting stationary maximum value as wind turbine rotor speed approaches infinity and rotor outlet swirl approaches zero. Theoretically, solution of the governing equations indicates 100% conversion efficiency could be possible with suitable wind turbine design and without wake limitations for all tip-speed ratios. Analogous to the thermodynamics laws for heat engines and similar to a Pelton wheel with hydro power, the wind turbine efficiency is not limited by the laws of fluid mechanics but by physical constraints only. Low tip-speed ratio would have greater prospects in achieving higher conversion efficiency in practice. Though the set of equations derived in the present technical note has assumed uniform bound circulation along the blade span, the same approach can be used for determination of optimum conditions for other blade designs or using other assumptions.
机译:Sharpe [3]的动量分析被进一步考虑。结果表明,当风力涡轮机转子转速接近无穷大且转子出口旋流接近零时,从常规执行器圆盘理论推导出的最大风能转换效率极限(即59.3%的贝兹极限)是极限固定最大值。从理论上讲,控制方程的解决方案表明,采用合适的风力涡轮机设计,并且对于所有叶尖速比均无尾流限制,转换效率可能达到100%。类似于热机的热力学定律,类似于带水力发电的Pelton轮,风力涡轮机的效率不仅受流体力学定律的限制,还受到物理约束的限制。在实践中,低叶速比将具有更高的转换效率前景。尽管在本技术说明中推导出的方程组假设沿叶片跨度有均匀的约束环流,但是可以使用相同的方法来确定其他叶片设计的最佳条件或使用其他假设。

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