December 2023

Conference Paper

Novel Gas-Driven Fuel Cell HVAC and Dehumidification Prototype

By:
Betts, Daniel; Ally, Moonis R; Sharma, Vishaldeep ; Tilghman, Matthew; Graham, Matthew; Mudiraj, Shyam
Page Number:
487-492
Issue Number:
#ipbc2018
Book Title:
Full conference proceedings for the 2018 International Building Physics Association Conference hosted at Syracuse University
Publication Date:
December 27, 2023
Conference Name:
International Building Physics Conference (IBPC 2018)
Conference Location:
Syracuse, NY, New York, United States of America
Conference Sponsor:
International Association of Building Physics (IABP)
View DOI Listing:
https://doi.org/10.14305/ibpc2018

Abstract

Performance of a novel gas-driven, electricity-producing heating, ventilation, and air conditioning (HVAC) system with no vapor compression and no hydrofluorocarbon (HFC) refrigerant shall be discussed in the paper. The prototype was evaluated at ORNL under a Small Business Voucher (SBV) Cooperative Research and Development (CRADA) program. The target market is commercial buildings in the United States. The goal is to mitigate or eliminate grid-power for building air conditioning, coincident peak demand and associated spinning reserves, aiding in flattening of the “duck curve”. The technical goal is to transform the common packaged rooftop unit into a cost-effective distributed energy resource, opening a new range of small applications and broad markets for micro-combined cycle cooling, heating, and power with integral thermal energy storage. The test results indicate the prototype would be competitive with natural gas distributed power plants with average electrical production ranging from 45% to 60% natural gas to electricity conversion efficiency. The technology has a Primary Energy Savings Potential of 4.4 Quads, higher than any other air conditioning and heating technology.


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