Successful Renewable Energy Implementation Model
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Published:2022-05-30
Issue:2
Volume:13
Page:
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ISSN:2180-3242
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Container-title:International Journal of Sustainable Construction Engineering and Technology
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language:
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Short-container-title:IJSCET
Author:
Abdulwali Alahdal Mohamed Abdulwahab, ,Abd Rahman Md.Nizam,Abo Mosali Najmaddin, ,
Abstract
This paper presents a case study on developing a relationship of success factors affecting to the sustainable solar energy success project implementationmodel. The model adopted partial least square (PLS) approach of structural equation modelling (SEM) and developed in SmartPLS software.The model comprised of six exogenous constructs of success factors and one endogenous construct of sustainable solar energy success. The data used to develop the model was derived from 295 valid responses of a questionnaire survey amongst the UAE employees ofenergy sectors. The survey adopted simple random sampling techniquein respondents’ selection. The developed model was evaluated at the measurement and structural components of the model it was found that the model hasachieved its goodness-of-fit, GoF criteria of 0.518 which indicates that the model has substantial validating power. When conducting hypothesis testing using bootstrapping function on the model, it was found that four of the constructs are significant based on t-value and p-value. The four significant constructs are economy, environment, technology and government support in relation with the sustainable solar energy project. Unfortunately, the other two exogenous constructs that are not significant are organisational and management (OAM) and Technology (TEC). These unsignificant relationships are dueto the characteristics of the collected data which is not strongenough to establish significant relationship as what have been hypothesized. The findings are contributions to any parties that involved in the development of sustainable solar energy project.
Subject
Building and Construction,Civil and Structural Engineering,Environmental Engineering