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Modeling of Energy and Exergy Efficiencies of a Wind Turbine Based on the Blade Element Momentum Theory Under Different Roughness Intensities

机译:不同粗糙度下基于叶片元动量理论的风力发电机能效模型

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摘要

In this study, the analysis of energy and exergy of a horizontal axis wind turbine based on blade element momentum (BEM) theory is presented. The computations are validated against wind tunnel data measured in the MEXICO wind turbine experiment. Blade roughness as one of the important environmental parameters is considered in the computations. Results show that the blade element momentum (BEM) theory has good ability to predict the energy and exergy efficiencies. The computation of energy and exergy exhibits that with the increasing the roughness from 0 mm to 0.5 mm, 2324W of the output power is reduced. Roughness of 0.5 mm at the wind speed of 16 mis reduced exergy and energy efficiencies 5.75% and 5.83%, respectively. It is also found that the roughness in the first four months of the operation has a more negative effect on the wind turbine performance.
机译:在这项研究中,基于叶片单元动量(BEM)理论,对水平轴风力发电机的能量和火用进行了分析。根据在墨西哥风力涡轮机实验中测得的风洞数据对计算进行了验证。计算中考虑了叶片粗糙度作为重要的环境参数之一。结果表明,叶片单元动量(BEM)理论具有很好的预测能量和火用效率的能力。能量和火用的计算表明,随着粗糙度从0 mm增加到0.5 mm,输出功率的2324W减小。风速为16 mis时,0.5 mm的粗糙度分别降低了火用和能源效率,分别降低了5.75%和5.83%。还发现,运行的前四个月的粗糙度对风力涡轮机的性能有更大的负面影响。

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