The present study investigates the sustainable use of a ground coupled heat pump (GCHP). In order to assess the performance of this type of installation, a computer model composed by two parts has been developed. The Borehole Heat Exchanger (BHE) model is developed in COMSOL Multiphysics, based on numerical methods. Part of the results are fed to the heat pump energy model, developed in MATLAB. A real case study has been used to validate the model: the Faculty of Engineering of La Sapienza University in Latina, undertaking a renewal project for an abandoned part of the building. After the renovation, the building will host a research center on the topic of low-enthalpy geothermal systems. The analysis have demonstrated that the modelled GCHP system can supply a significant share of the energy required from the future research center. This amount of energy can be provided keeping almost stable the thermal balance of the surrounding region in the subsoil, operating in a sustainable way. The range of variation of the ground temperature with respect to the average value is within the limit of 5°C, which is the cap set by the international legislation.

A ground coupled heat pump model based on COMSOL multiphysics and MATLAB software / Alimonti, C; Soldo, E; Minniti, S; Speetjens, Mfm. - (2018), pp. 1-16. (Intervento presentato al convegno 36th UIT Heat transfer conference tenutosi a Catania; Italy).

A ground coupled heat pump model based on COMSOL multiphysics and MATLAB software

C Alimonti
Methodology
;
E Soldo
Writing – Original Draft Preparation
;
S Minniti
Data Curation
;
2018

Abstract

The present study investigates the sustainable use of a ground coupled heat pump (GCHP). In order to assess the performance of this type of installation, a computer model composed by two parts has been developed. The Borehole Heat Exchanger (BHE) model is developed in COMSOL Multiphysics, based on numerical methods. Part of the results are fed to the heat pump energy model, developed in MATLAB. A real case study has been used to validate the model: the Faculty of Engineering of La Sapienza University in Latina, undertaking a renewal project for an abandoned part of the building. After the renovation, the building will host a research center on the topic of low-enthalpy geothermal systems. The analysis have demonstrated that the modelled GCHP system can supply a significant share of the energy required from the future research center. This amount of energy can be provided keeping almost stable the thermal balance of the surrounding region in the subsoil, operating in a sustainable way. The range of variation of the ground temperature with respect to the average value is within the limit of 5°C, which is the cap set by the international legislation.
2018
36th UIT Heat transfer conference
ground coupled heat pump; geothermal energy; COMSOL multiphysics; borehole heat exchanger
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
A ground coupled heat pump model based on COMSOL multiphysics and MATLAB software / Alimonti, C; Soldo, E; Minniti, S; Speetjens, Mfm. - (2018), pp. 1-16. (Intervento presentato al convegno 36th UIT Heat transfer conference tenutosi a Catania; Italy).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1173803
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