用多准则辅助决策法(Mcdm)选择微球式水轮机筒体的合适材料

Haoua Laila Tidjani, Matho Mekjele Raïssa, J. Kenfack, O. Hamandjoda, P. Ele
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引用次数: 0

摘要

微型水力发电厂仍然是一种可持续的解决方案,可以在有潜力的情况下满足偏远人口的电力需求。新材料的发现导致工程师审查材料的选择,以降低成本,方便制造流体机械部件。在本研究中,我们使用了多准则决策支持方法(MCDM),如层次分析法(AHP)、理想解相似性排序偏好法(TOPSIS)、妥协解(VIKOR)等,以选择制造微型Pelton涡轮机桶的最佳材料。通过对水轮机可用材料的文献回顾,我们可以选择五种替代材料,如低碳钢;铝合金;不锈钢;高密度聚乙烯;铸铁和可加工性等7个非常重要的制造材料评价标准;极限抗拉强度;密度;硬度;成本;维护成本和耐腐蚀性。从AHP方法的结果来看,相干指数为0.0904,相干比为0.0669,可用于选材实践。考虑到通过TOPSIS和VIKOR技术获得的五种替代材料的性能分数,高密度聚乙烯似乎是最好的材料,其次是铝合金。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selection of a Suitable Material by a Multi-Criteria Decision Aid Method (Mcdm) for the Manufacture of the Buckets of a Micro Pelton Turbine
Micro hydro power plant remains a sustainable solution to meet the electrical needs of isolated populations when the potential is there. The discovery of new materials leads engineers to review the choice of material, in order to reduce the cost and facilitate the manufacture of hydromechanical components. In this study, to select the best choice of material for the manufacture of buckets of a micro Pelton turbine, we used multi-criteria decision support methods (MCDM) such as the Analytical Hierarchy Process (AHP), the order preference technique by similarity to the ideal solution (TOPSIS), the compromise solution (VIKOR). Based on of the literature review on the materials usable for the manufacture of hydraulic turbines, we were able to select five alternative materials such as mild steel ; aluminum alloy ; stainless steel ; high density polyethylene ; cast iron and seven very important material evaluation criteria for manufacturing such as machinability ; ultimate tensile strength ; the density ; hardness ; the cost ; maintenance cost and corrosion resistance. It appears from results via the AHP method that the coherence index of 0.0904 and the coherence ratio of 0.0669 are usable for the practice of material selection. Considering the performance scores for the five alternatives obtained via the TOPSIS and VIKOR techniques, it appears that high density polyethylene is the best material, followed by the aluminum alloy.
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