An integrated decision-making model for wind turbine blade material

S. Mondal, Mallar Das, Swarnangshu Mukhopadhyay, Koushik Bag
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引用次数: 1

Abstract

Wind turbines are the devices used to harness wind energy. The turbine blades are one of the components which directly confront the wind and convert it into mechanical energy. Various material composites are used in the turbine industries to manufacture wind turbine blades but it is hard to select the best material composite along with the choices. In this study, an MCDM technique named Measurement of Alternatives and Ranking according to Compromise Solution (MARCOS) method is applied to select the best material composite among the set of materials for manufacturing of the blades. The weights of the criteria are determined by the Best Worst (BWM) method. Around 9 criteria such as the ultimate tensile strength, stiffness, cost of the materials, panel stability parameter of the material etc. are used to rank the best alternative among the blade materials. The carbon fibre reinforced plastic is seen to be the best material among the other materials composite by applying the MARCOS method.
风电叶片材料综合决策模型
风力涡轮机是用来利用风能的设备。涡轮叶片是直接面对风并将其转化为机械能的部件之一。在风力发电工业中,各种材料复合材料用于制造风力发电机叶片,但随着材料的选择,很难选择最佳的材料复合材料。在本研究中,采用一种基于折衷解决方案的替代测量和排序(MARCOS)方法的MCDM技术,从一组制造叶片的材料中选择最佳的材料组合。标准的权重由最佳最差(BWM)方法确定。采用极限抗拉强度、刚度、材料成本、材料面板稳定性参数等9项标准对叶片材料的最佳替代方案进行排名。应用MARCOS方法,碳纤维增强塑料被认为是其他材料复合材料中最好的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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