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Optimal siting of edutainment energy parks through the modelling of weighted spatial decision criteria

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Abstract In transitioning towards cleaner production and any other new policy, public acceptance is often seen as a major issue. Edutainment energy parks, with the potential to produce and exhibit… Click to show full abstract

Abstract In transitioning towards cleaner production and any other new policy, public acceptance is often seen as a major issue. Edutainment energy parks, with the potential to produce and exhibit various renewable energies, seems to be a successful strategy for increasing public awareness and culture building that may lead to public acceptance. The location of these parks is the first, and perhaps the most important, challenge impacting their future usage and success. In this study, a hybrid decision support model was developed by combining the Delphi method (to obtain the main site selection criteria), the Decision Making Trial and Evaluation Laboratory technique (to establish the interdependence and correlation between complex criteria), and the Fuzzy Analytic Network Process (to overcome inconsistent and uncertain judgments whilst weighting the selected criteria). The developed method identified twelve sub-criteria grouped under four main criteria, including transportation infrastructures, population and social, environmental, and physical indicators. The weighting results showed that the built environment and natural topography (0.148), parcel size, land use and economic matters (0.146), legibility (0.107), and population centers (0.104) are the four most important sub-criteria. Application to a real data set of Tehran for efficiency revealed that Afra Park with a 5419 m2 area is the most optimal parcel for establishing an edutainment energy park in District 7 of the city, according to the selected criteria. Therefore, implementing these criteria demonstrated that they can be useful when working on a practical project with real data.

Keywords: decision; edutainment energy; siting edutainment; energy; energy parks; optimal siting

Journal Title: Journal of Cleaner Production
Year Published: 2020

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