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A numerical and experimental study of a new Savonius wind rotor adaptation based on product design requirements

机译:基于产品设计要求的新型Savonius风力机转子的数值和实验研究

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This paper presents the numerical-experimental study carried out on a new rotor adapted from a Savonius rotor. Aesthetic, ergonomic and functional requirements have been incorporated into it in order to be part of sustainable consumer products. The new rotor consists of a parametric model adaptable to the dimensions and geometry of the products which it will be part of. A set of translation, symmetry, rotation and scaling operations have been applied to the bucket sections of the Savonius rotor by means of transforming the initial cylindrical buckets into topological surfaces with an organic shape. The new modified Savonius rotor and the conventional Savonius with the same Aspect Ratio have been tested in an open jet wind tunnel in order to verify the influence level of product design parameters on rotor performance, in terms of power coefficient, torque coefficient and mechanical power generated. Experimental tests have been carried out for Reynolds values in the range of [3.430.10(4) and 1.419.10(5)]. A numerical analysis using an incompressible unsteady Reynolds average Navier Stockes model has been validated by means of the experimental results. Experimental and numerical results coincide with a 3.5% error. The behavior of the turbine has been analyzed by varying the angle of rotation for the sections of its buckets. Using a rotation angle of 45 degrees the power coefficient values improve by 32% compared to the values obtained using an angle of 0 degrees. The rotor has been dimensioned for its application in a patented consumer product of small dimensions and requirements of lateral accessibility to its interior. Under these limited conditions the rotor meets the small-scale energy requirements of the product. The new rotor is designed as an aid to the energy consumption of the product in which it is incorporated, maintaining the advantages of a conventional Savonius rotor as self-starting, easy manufacture and maintenance, obtaining at the same time a product that sells better, is more able to integrate into its environment and is customizable for the consumer.
机译:本文介绍了在采用Savonius转子的新型转子上进行的数值实验研究。审美,人体工程学和功能要求已纳入其中,以便成为可持续消费产品的一部分。新转子包括一个参数模型,该模型可适应将要包含在其中的产品的尺寸和几何形状。一组平移,对称,旋转和缩放操作已通过将初始的圆柱形铲斗转换为有机形状的拓扑表面而应用于Savonius转子的铲斗部分。为了验证产品设计参数对转子性能的影响程度,包括功率系数,转矩系数和产生的机械功率,已经在敞开式喷气风洞中对新型改良的Savonius转子和具有相同长宽比的常规Savonius进行了测试。 。已经对[3.430.10(4)和1.419.10(5)]范围内的雷诺值进行了实验测试。实验结果验证了使用不可压缩的非稳态雷诺兹平均Navier Stockes模型进行的数值分析。实验和数值结果与3.5%的误差相吻合。通过改变叶片叶片的旋转角度来分析涡轮机的性能。与使用0度角获得的值相比,使用45度角旋转时,功率系数值提高了32%。转子的尺寸已根据其在获得专利的消费产品中的应用而定尺寸,该产品尺寸较小,并且需要横向进入内部。在这些有限的条件下,转子可以满足产品的小规模能源需求。新型转子的设计有助于降低产品的能耗,并保持了传统Savonius转子的优点,即具有自启动,易于制造和维护的优点,同时还能获得销售更好的产品,能够集成到其环境中,并且可以为消费者定制。

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