The use of subsurface for thermal energy transport in district networks

Master Thesis (2017)
Author(s)

K. Jiang (TU Delft - Civil Engineering & Geosciences)

Contributor(s)

Mark Bakker – Mentor

Martin Bloemendal – Mentor

Niels Hartog – Mentor

BM van Breukelen – Mentor

Faculty
Civil Engineering & Geosciences
Copyright
© 2017 Kaixuan Jiang
More Info
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Publication Year
2017
Language
English
Copyright
© 2017 Kaixuan Jiang
Graduation Date
30-08-2017
Awarding Institution
Delft University of Technology
Faculty
Civil Engineering & Geosciences
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Abstract

This study introduces a new concept of ATES system, which is called ATEST system, to fulfill the transport function while crossing the barriers in water transmission and pipe replacements. Firstly, analytical models were used to help understand the physical process and range the working conditions of the ATEST system. Then numerical models were used to prove the feasibility and the value of this new conceptual system. Acceptable system performance that can meet the heat demand was iterated in case simulation; and the economical advantages were identified by comparing it with traditional ATES systems. The ATEST system showed a greater practical value than the ATES system in: 1) solving the discrepancy between heat service and heat demand in space, and 2) crossing barriers where pipes cannot be buried. However, the system should be further modified in operation to acquire better performance and avoid practical problems.

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