评估陆上风力发电和生态可持续性的中性MCDM方法

Karam M. Sallam, Ali Wagdy Mohamed
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摘要

近年来,不断增长的电力生产需求和生态问题促使人们坚信可再生能源的必要性。说到可持续发电,风能是最重要的可再生能源之一。本研究试图提出一种结构技术,用于评估可持续性三个维度的陆上风电设施的性能。陆上风电设施的能源生产、环境影响和实用性都依赖于准确的评估。本文讨论了风力资源、场地可达性、环境影响、许可和监管要求、涡轮机技术、维护和运行、互联和传输等标准和因素。可再生能源、成本效益、可靠性和创造就业机会只是提到的陆上风力设施的几个优势。本研究采用区间值中性集与加权和模型(WSM)方法来计算标准的权重,并对备选方案进行排序。我们把风速和风向作为最好的判断标准。风力发电厂的潜在发电量很大程度上取决于当地的风速和风向。
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Neutrosophic MCDM Methodology for Evaluation Onshore Wind for Electricity Generation and Sustainability Ecological
The conviction in the necessity of renewable energy has been prompted by both the constantly increasing need for power production and the ecological issues of recent years. When it comes to generating power in a sustainable manner, wind is among the most essential renewable energy sources. This research attempts to present a structural technique for assessing the performance of operational onshore wind facilities with respect to the three dimensions of sustainability. The energy production, environmental effect, and practicability of onshore wind facilities are all dependent on accurate assessments. Wind resources, site accessibility, environmental impact, permitting and regulatory requirements, turbine technology, maintenance and operation, interconnection and transmission, and other criteria and factors are discussed in this research paper. Renewable energy, cost-effectiveness, dependability, and job creation are only a few of the advantages of onshore wind facilities that are mentioned. This study used the interval-valued neutrosophic set with the Weighted Sum Model (WSM) method to compute the weights of criteria and rank the alternatives. We got the wind speed and direction as the best criterion. The potential energy production of a wind plant is heavily dependent on the local wind speed and direction.    
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