Energy and Economic Assessment of a Stirling Engine Powered by Solar Energy in Bolivia

Description

The Bolivian governments concerns that are related to reducing the consumption of diesel fuel, which is imported, subsidized, and provided to isolated electric plants in rural communities, have led to the implementation of hybrid power systems. The data in this submissions was created to compare a photovoltaic (PV)/Stirling battery system to a more traditional (PV)/diesel/battery system. The data includes: - MATLAB Simulink model of a Parabolic dish-Stirling engine-battery system. - Input data (Meteorological and load demand) for El Carmen, Tablani, and Pojo Pata communities

Resources

Name Format Description Link
0 MATLAB model for Dish Stirling Battery System Model https://data.openei.org/files/5671/Dish_Stirling_Battery_System.slx
21 This article presents the performance analysis in terms of energy efficiency, economic feasibility, and environmental sustainability of a photovoltaic (PV)/Stirling battery system. The analysis includes the dynamic start-up and cooling phases of the system, and then compares its performance with a hybrid photovoltaic (PV)/diesel/battery system, whose configuration is usually more common. https://www.mdpi.com/1996-1073/13/4/980
53 Meteorological and load demand data for El Carmen, Bolivia. The data was used as input data into the MATLAB Simulink model: "Dish Stirling Battery System Model". https://data.openei.org/files/5671/Input%20data_El%20Carmen.xlsx
53 Meteorological and load demand data for Pojo Pata, Bolivia. The data was used as input data into the MATLAB Simulink model: "Dish Stirling Battery System Model". https://data.openei.org/files/5671/Input%20data_Pojo%20Pata.xlsx
53 Meteorological and load demand data for Tablani, Bolivia. The data was used as input data into the MATLAB Simulink model: "Dish Stirling Battery System Model". https://data.openei.org/files/5671/Input%20data_Tablani.xlsx
21 This article presents the performance analysis in terms of energy efficiency, economic feasibility, and environmental sustainability of a photovoltaic (PV)/Stirling battery system. The analysis includes the dynamic start-up and cooling phases of the system, and then compares its performance with a hybrid photovoltaic (PV)/diesel/battery system, whose configuration is usually more common. https://doi.org/10.3390/en13040980

Tags

  • stirling-engine
  • bolivia
  • hybrid-battery-system
  • meteorological-data
  • matlab
  • system
  • energy-storage
  • diesel
  • load
  • stirling-battery-system
  • power
  • code
  • model
  • stirling
  • simulink
  • load-demand
  • demand
  • battery
  • simulation
  • energy

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