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In particular, the paper shows the possibility to achieve higher compactness of the borehole field footprint area when yearly balanced heat transfer in the borehole field is expected.
Also, the total heat flow to the borehole field should be constant over time.
The model is validated by generating g-functions of some simple borehole field configurations.
In addition, the borehole field layout can have a major impact on ground temperature.
This enables to test the same borehole field configuration pattern for different piping arrangement.
In the modeling of shallow geothermal systems, the accurate representation of the borehole field configuration is important for a proper estimation of the long term thermal behavior of borehole field systems.
Similar(46)
Conclusions are obtained to locate the representative borehole in different configurations of the borehole fields.
Available tools utilized for the design of borehole fields don't consider these aspects in the calculation.
Modeling tools based on the so-called g-functions method, utilized for the design of borehole fields, assume that boreholes are vertical.
Based on these experimental, modelling and theoretical results, guidelines are formulated to optimise the design of vertical borehole fields with an objective of inter-seasonal heat storage.
In particular, borehole fields should define cylindrical storage volumes with diameters twice their height, and depth should not exceed 100 m.
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CEO of Professional Science Editing for Scientists @ prosciediting.com