TIDOP-USAL / GES-CAL

Software for the design of shallow geothermal energy systems

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GES-CAL

Software for the design of shallow geothermal energy systems

Attribution

If you use this project for research purposes, please quote these articles:

Cristina Sáez Blázquez, Arturo Farfán Martín, Pedro Carrasco García, Luis Santiago Sánchez Pérez, Sara Jiménez del Caso. “Analysis of the process of design of a geothermal installation”, Renewable Energy 89 (2016) 1-12.

Cristina Sáez Blázquez, Arturo Farfán Martín, Ignacio Martín Nieto, Pedro Carrasco García, Luis Santiago Sánchez Pérez, Diego González Aguilera. “Thermal conductivity map of the Avila region (Spain) based on thermal conductivity measurements of different rock and soil samples”, Geothermics 65 (2017) 60–71.

Cristina Sáez Blázquez, Arturo Farfán Martín, Ignacio Martín Nieto, Pedro Carrasco García, Luis Santiago Sánchez Pérez and Diego González-Aguilera. “Efficiency Analysis of the Main Components of a Vertical Closed-Loop System in a Borehole Heat Exchanger”, Energies (2017), 10, 201-216; Special Issue "Low Enthalpy Geothermal Energy".

Cristina Sáez Blázquez, Arturo Farfán Martín, Ignacio Martín Nieto and Diego González-Aguilera. “Measuring of Thermal Conductivities of Soils and Rocks to Be Used in the Calculation of A Geothermal Installation”, Energies (2017), 10, 795-813.

Cristina Sáez Blázquez*, Arturo Farfán Martín, Ignacio Martín Nieto, Pedro Carrasco García, Luis Santiago Sánchez Pérez, Diego González-Aguilera. Analysis and study of different grouting materials in vertical geothermal closed-loop systems, Renewable Energy 114 (2017) 1189-1200.

Cristina Sáez Blázquez, Arturo Farfán Martín, Pedro Carrasco García, Diego González-Aguilera. “Thermal conductivity characterization of three geological formations by the implementation of geophysical methods”, Geothermics 72 (2018) 101-111.

Cristina Sáez Blázquez, Arturo Farfán Martín, Ignacio Martín Nieto and Diego González-Aguilera. “Economic and Environmental Analysis of Different District Heating Systems Aided by Geothermal Energy”, Energies, Special Issue, Geothermal Energy: Utilization and Technology, (2018), 11, 1265.

Ignacio Martín Nieto, Arturo Farfán Martín, Cristina Sáez Blázquez, Diego González Aguilera, Pedro Carrasco García, Emilio Farfán Vasco, Javier Carrasco García, Use of 3D electrical resistivity tomography to improve the design of low enthalpy geothermal systems. Geothermics 79 (2019) 1–13.

Cristina Saez Blazquez, David Borge-Diez, Ignacio Martin Nieto, Arturo Farfan Martin, Diego Gonzalez-Aguilera, Technical optimization of the energy supply in geothermal heat pumps. Geothermics 81 (2019) 133–142.

Cristina Sáez Blázquez, Ignacio Martín Nieto, Arturo Farfán Martín, Diego González-Aguilera and Pedro Carrasco García, Comparative Analysis of Different Methodologies Used to Estimate the Ground Thermal Conductivity in Low Enthalpy Geothermal Systems. Energies (2019), 12(9), 1672.

Cristina Sáez Blázquez, Vittorio Verda, Ignacio Martín Nieto, Arturo Farfán Martín, Diego González-Aguilera, Analysis and optimization of the design parameters of a district groundwater heat pump system in Turin, Italy. Renewable Energy (2020), 149, 374-383.

Introduction

A new tool for the design of low enthalpy geothermal systems. Its initial version has been especially developed for the calculation of geothermal installations placed in the region of Ávila (Spain). GES – CAL software is able to determine the final design of the geothermal system as well as providing an exhaustive economic and environmental evaluation from the comparison of the geothermal solution with other energy sources

Compilation

Download fields and libs folders Compile using PyCharm

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Software for the design of shallow geothermal energy systems

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Language:Python 100.0%