Skip to main navigation Skip to search Skip to main content

Techno-Economic Analysis of Geologically Connected Seawater Air Conditioning (GeoSWAC) Concept for District Cooling at the University of Puerto Rico at Rio Piedras: Preprint

  • National Laboratory of the Rockies
  • United States Department of Energy

Research output: Contribution to conferencePaper

Abstract

At the University of Puerto Rico at Rio Piedras, a central chilled water plant supplies cooling to several campus buildings, contributing significantly to electricity demand during daytime peak hours, particularly in the summer months. These operational challenges are exacerbated by Puerto Rico's tropical rainforest climate and a power grid vulnerable to frequent disruptions caused by hurricanes and tropical storms. This study presents a techno-economic analysis of the existing chilled water plant serving four representative campus buildings and introduces a conceptual alternative: the Geologically connected Seawater Air Conditioning (GeoSWAC) system. GeoSWAC leverages stable low temperatures of deep ocean water (~1 km depth), hydraulically connected to an inland well, to deliver cooling without the use of vapor-compression refrigeration. Using modeled annual cooling loads and chiller performance data, capital costs, energy consumption, and levelized cost of cooling (LCOC) were evaluated for both systems. While GeoSWAC showed higher capital costs than the chiller-based scenario, operational costs were significantly lower at $26k-$53k annually, resulting in a lower LCOC between $2.3/MWh and $8.2/MWh compared to $30.2/MWh-$33.6/MWh for the chiller scenario. These results suggest that the GeoSWAC system offers a promising, low-energy, and climate-resilient alternative for large-scale cooling in tropical coastal environments, with significant potential to reduce peak electricity demand and improve long-term system reliability.
Original languageAmerican English
Number of pages23
StatePublished - 2026
Event2025 Geothermal Rising Conference - Reno, Nevada
Duration: 26 Oct 202529 Oct 2025

Conference

Conference2025 Geothermal Rising Conference
CityReno, Nevada
Period26/10/2529/10/25

NLR Publication Number

  • NLR/CP-5700-95766

Keywords

  • district cooling
  • district energy
  • GeoSWAC
  • Puerto Rico
  • reservoir thermal energy storage
  • techno-economic analysis

Fingerprint

Dive into the research topics of 'Techno-Economic Analysis of Geologically Connected Seawater Air Conditioning (GeoSWAC) Concept for District Cooling at the University of Puerto Rico at Rio Piedras: Preprint'. Together they form a unique fingerprint.

Cite this