不同纳米颗粒在换热器应用中的可持续性评估:一种基于直觉模糊组合距离的评估方法

Q3 Environmental Science
Sunil Kumar, Sandeep Kumar Gautam, Ankush Kumar, Rajesh Maithan, Anil Kumar
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引用次数: 3

摘要

传统能源的消耗速度令人担忧,为了使热力系统环境友好、高效、经济、可持续、技术可靠,人们对此给予了极大关注。从成本、效率、技术性和环境影响四个方面评估了五种不同类型的纳米颗粒(陶瓷、碳基、金属基、聚合物和脂质基)在热交换器中的可持续性。采用直觉模糊作战距离评估法(IFCODAS)进行分析。为了衡量纳米颗粒的可持续性,已经根据专家意见和焦点小组会议认可了一套11项评估标准。通过融合直觉模糊集(IFS)理论和基于距离的评估(CODAS)方法,IFCODAS方法允许决策者根据每个标准对备选的五个纳米颗粒进行评分。基于IFCODAS方法获得的结果,观察到碳基纳米颗粒比其他纳米颗粒具有提供显著可靠和可持续的热系统的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainability assessment of different nanoparticle for heat exchanger applications: an intuitionistic fuzzy combinative distance-based assessment method
The rate at which the conventional energy sources are depleting is a matter of concern, and there have been major attention on this to make the thermal systems environment friendly, efficient, economic, sustainable, technically reliable. Sustainability of five different types of nanoparticles (Ceramic, carbon based, metal based, polymeric, and lipid based) from the perspective of four aspects involving cost, efficiency, technicality and environmental effect, in heat exchangers has been assessed. The analysis is carried out using the intuitionistic fuzzy combative distance based assessment (IFCODAS) method. In order to measure the sustainability of nanoparticles, a set of eleven evaluating criteria have been accredited on the basis of expert opinions and focus group meetings. By amalgamating the intuitionistic fuzzy set (IFS) theory as well as the use of distance-based assessment (CODAS) method, the IFCODAS method has permitted the decision-makers to rate the alternative five nanoparticles pertaining to each criterion. On the basis of the results obtained from IFCODAS method, it is observed that the carbon based nanoparticles have an immense potential to provide significantly reliable and sustainable thermal system than other nanoparticles.
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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