By Theo Elmer
The thesis has significantly tested, either theoretically and experimentally, a singular tri-generation process proposal - with encouraging process functionality verified. The thesis establishes the numerous power of the unconventional tri-generation method in offering powerful equipped atmosphere decarbonisation via decentralised new release; strengthening the case for a destiny hydrogen economy.
In reaction to the severe have to decarbonise the outfitted surroundings, replacement tools for more beneficial power utilisation must be explored together with tri-generation platforms. The thesis provides the layout, improvement and trying out of a singular proof-of-concept tri-generation method in line with reliable oxide gas telephone (SOFC) and liquid desiccant air-con expertise to supply electrical energy, heating and cooling to development purposes. No past paintings has been said on the sort of process. The subject matter of the paintings sits in the issues of low-carbon and sustainable power applied sciences, development providers and coffee carbon development applications.
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Extra info for A Novel SOFC Tri-generation System for Building Applications
However, with continual technical improvements to component technology, stand-alone systems are expected to become a major competitor to the hybrid system due to a high COPth, low electrical use and thus environmental impact. 2 presents a review of hybrid and stand-alone liquid desiccant systems respectively. Particular reference to system performance and any operating considerations are made throughout. The summary aims to identify the type of design best suited to the development of a SOFC liquid desiccant trigeneration system.
2 (1) an extensive review of the literature in Chap. 2, (2) theoretical assessment in Chaps. 3 and 4 and experimental assessment in a laboratory context in Chaps. 5, 6 and 7. The thesis initially aimed to experimentally evaluate the novel tri-generation system concept in field trials at The University of Nottingham’s Creative Energy Homes. However, technical and commercial issues with the building-installed SOFC CHP system meant an experimental integration could not be completed. A laboratory based experimental trigeneration system and a theoretical integration analysis, based on empirical SOFC CHP field trial and desiccant system data is presented.
CHP is a proven technology, providing various technical, economic and environmental benefits. However, the efficiency of CHP systems tends to fall in hot and humid climates with long summer seasons, where the demand for cooling and/or dehumidification outweighs heating. Tri-generation has been introduced to take the concept of CHP to the next level. By incorporating a heat driven cooling cycle into the system, higher levels of overall efficiencies are achievable due to a greater utilisation of waste heat throughout the year.
A Novel SOFC Tri-generation System for Building Applications by Theo Elmer