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Contribution to the Aerodynamic Study of the Air-Sand Flow Around a Wind Turbine Blade Installed in Desert Environment of Algeria

机译:对安装在阿尔及利亚沙漠环境中的风力涡轮机叶片周围的风沙流的空气动力学研究的贡献

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Algeria has recently started to use wind energy to produce electricity, where the first wind farm was installed in a desert site located at the south, in Kaberten at Adrar region. The main objective of this work is to study the impact of the sand numerically using a multiphase CFD model based on a Eulerian-Lagrangian approach. In this approach, the air is considered as a continuous phase governed by averaged Navier Stokes equations and the sand particles are considered as a discrete phase governed by Newton's second law. A parametric study includes the variation of different parameters, such as particles concentration, particles volume fraction and particles diameter were applied to the local region of Adrar. The comparison between results obtained by the multiphasic model and results of air without particles (monophasic model) allowed us to identify the global influence of sand on the aerodynamic performance of the rotor under different sandy wind conditions. It was noted that the presence of sand particles could significantly reduce the aerodynamic performances.
机译:阿尔及利亚最近开始利用风能发电,在那里,第一个风电场安装在阿德拉尔地区卡伯滕南部的沙漠地带。这项工作的主要目的是使用基于欧拉-拉格朗日方法的多阶段CFD模型以数值方式研究沙子的影响。在这种方法中,空气被视为由平均Navier Stokes方程控制的连续相,而沙粒被视为由牛顿第二定律控制的离散相。参数研究包括不同参数的变化,例如将颗粒浓度,颗粒体积分数和颗粒直径应用于Adrar的局部区域。通过多相模型获得的结果与无颗粒空气的结果(单相模型)之间的比较,我们可以确定沙在不同沙风条件下对转子空气动力性能的整体影响。注意到砂粒的存在会显着降低空气动力学性能。

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