Abstract
This study presents a novel underground thermal energy storage (UTES) system designed for space heating in buildings located in moderate cold climates. The proposed UTES features a borehole with a depth of 25 ft. (7.62 m) and a diameter of 3 ft. (0.91 m), containing two helical pipe loops-one for discharge fluid and another for recharge fluid-and a thermally enhanced phase change material (PCM) layer that provides high energy storage capacity. The system requires daily thermal recharging using a low-grade heat source for a few hours and delivers continuous heating at a nearly constant discharge rate without significant performance degradation over a 24-h period. This study demonstrates that the optimized UTES, when recharged with hot fluid at an inlet temperature of 40 degrees C for 6 h daily, can provide a continuous heat discharge rate of approximately 2.9 kW for 24 h or 3.4 kW if operated under a shorter discharge period of 15 h (17:00-08:00). With a round-trip efficiency of 72-97%, the proposed UTES offers an efficient and reliable solution for short- and long-duration thermal energy storage technology, making it a promising technology for cold climates.
| Original language | American English |
|---|---|
| Number of pages | 11 |
| Journal | Applied Thermal Engineering |
| Volume | 298 |
| Issue number | Part 3 |
| DOIs | |
| State | Published - 2026 |
NLR Publication Number
- NLR/JA-5500-96977
Keywords
- geothermal heat pump
- PCM
- shallow borehole
- thermal energy network
- thermal energy storage
- underground heat storage
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