An Integrated Mathematical Attitude Utilizing Fully Fuzzy BWM and Fuzzy WASPAS for Risk Evaluation in a SOFC

Author:

Lin Zeyu,Ayed Hamdi,Bouallegue Belgacem,Tomaskova HanaORCID,Jafarzadeh Ghoushchi SaeidORCID,Haseli GholamrezaORCID

Abstract

Nowadays, because of the energy crisis, combined heat and power systems have notable benefits. One of the best devices is SOFC (Solid Oxide Fuel Cell) which joins heat and power frameworks. Some considerable failure modes arise that can affect these devices’ productivity. Generally, failure modes evaluations need an experts team to achieve uncertainties belongs to the risk assessment procedure. To improve the efficiency of the routine FMEA methodology and to represent a suitable hybrid fuzzy MCDM approach for FMEA, in this work, fully fuzzy best-worst method (FF-BWM) is employed to achieve the risk factors weights then fuzzy weighted aggregated sum product assessment (F-WASPAS) approach to detect the failure modes priorities is utilized. Ultimately, the sensitivity analyses demonstrate that the offered framework is verified and can make applicable data in risk management decision-making evaluation.

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference55 articles.

1. Fuel flexibility for a turbocharged SOFC system

2. Numerical study of curved-shape channel effect on performance and distribution of species in a proton-exchange membrane fuel cell: Novel structure;Pashaee Golmarz;J. Renew. Energy Environ.,2018

3. The Effect of Proton-Exchange Membrane Fuel Cell Configuration Changing from Straight to Cylindrical State on Performance and Mass Transport: Numerical Procedure;Pashaee Golmarz;J. Renew. Energy Environ.,2021

4. Preparation of NiO-YSZ/YSZ bi-layers for solid oxide fuel cells by electrophoretic deposition

5. In-situ temperature monitoring directly from cathode surface of an operating solid oxide fuel cell

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