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Thermodynamic Evaluation of a Small Wind Turbine

机译:小型风力发电机的热力学评估

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A small personal use wind turbine (PWT) is studied and tested for power, exergy and energy evaluation under different operating conditions. The wind turbine incorporates non-twisted blades of 1.5 m span and 0.27 m chord, using NACA 63418 airfoil. Using the earlier test results at pitch angles of 22°, 34° and 38° between the wind speeds of 4 m/s to 7 m/s, torque produced by each blade is determined. It is desired to calculate the torque as it is difficult to measure it for a small wind turbine. Using the governing equations and available computational fluid dynamics software, the total torque on each blade is determined. The resultant torque yielded the mechanical power output of the PWT. Using the available power, energy and exergy in the air flow, corresponding efficiencies are determined. To determine the changes in energy and exergy with respect to the wind speed, wind-chill factor expression is utilized. Results are collected for a wide range of wind speeds and pitch angles. Power, energy, exergy and their corresponding efficiency is evaluated to determine the optimal use pitch angle and ambient conditions. The pitch angles of 22° and 38° yielded high efficiencies although 22° produced the higher rotational speed as compared to 38°. The result suggests better performance for continuous wind speed conditions at low pitch angles- with respect to the rotating plane. For non-continuous wind conditions, higher pitch angles appeared beneficial.
机译:对小型个人用风力涡轮机(PWT)进行了研究和测试,以评估其在不同运行条件下的功率,火用和能量。风力涡轮机采用NACA 63418机翼,跨度为1.5 m,弦长为0.27 m,无扭叶片。使用较早的测试结果,在4 m / s至7 m / s的风速之间的俯仰角为22°,34°和38°的情况下,可以确定每个叶片产生的扭矩。期望计算扭矩,因为对于小型风力涡轮机来说难以测量扭矩。使用控制方程式和可用的计算流体动力学软件,可以确定每个叶片上的总扭矩。合成扭矩产生了PWT的机械功率输出。利用气流中的可用功率,能量和火用度,可以确定相应的效率。为了确定相对于风速的能量和火用变化,利用了风寒因子表达。收集了各种风速和俯仰角的结果。对功率,能量,火用及其相应的效率进行评估,以确定最佳的使用俯仰角和环境条件。尽管22°和38°的俯仰角与38°相比产生了更高的旋转速度,但产生了高效率。结果表明,相对于旋转平面,在低俯仰角的连续风速条件下,性能更好。对于不连续的风况,较高的俯仰角似乎是有益的。

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