Thermodynamic analysis of a gamma type Stirling engine in an energy recovery system
Sowale, Ayodeji and Kolios, Athanasios J. and Fidalgo, Beatriz and Somorin, Tosin and Parker, Alison and Williams, Leon and Collins, Matt and McAdam, Ewan and Tyrrel, Sean (2018) Thermodynamic analysis of a gamma type Stirling engine in an energy recovery system. Energy Conversion and Management, 165. pp. 528-540. ISSN 0196-8904 (https://doi.org/10.1016/j.enconman.2018.03.085)
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Abstract
The demand for better hygiene has increased the need for developing more effective sanitation systems and facilities for the safe disposal of human urine and faeces. Non-Sewered Sanitary systems are considered to be one of the promising alternative solutions to the existing flush toilet system. An example of these systems is the Nano Membrane Toilet (NMT) system being developed at Cranfield University, which targets the safe disposal of human waste while generating power and recovering water. The NMT will generate energy from the conversion of human waste with the use of a micro-combustor; the heat produced will power a Stirling engine connected to a linear alternator to generate electricity. This study presents a numerical investigation of the thermodynamic analysis and operational characteristics of a quasi steady state model of the gamma type Stirling engine integrated into a combustor in the back end of the NMT system. The effects of the working gas, at different temperatures, on the Stirling engine performance are also presented. The results show that with the heater temperature of 390 °C from the heat supply via conduction at 820 W from the flue gas, the Stirling engine generates a daily power output of 27 Wh/h at a frequency of 23.85 Hz.
ORCID iDs
Sowale, Ayodeji, Kolios, Athanasios J. ORCID: https://orcid.org/0000-0001-6711-641X, Fidalgo, Beatriz, Somorin, Tosin ORCID: https://orcid.org/0000-0001-5466-5970, Parker, Alison, Williams, Leon, Collins, Matt, McAdam, Ewan and Tyrrel, Sean;-
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Item type: Article ID code: 65004 Dates: DateEvent1 June 2018Published26 March 2018AcceptedSubjects: Technology > Environmental technology. Sanitary engineering Department: Faculty of Engineering > Naval Architecture, Ocean & Marine Engineering
Faculty of Engineering > Chemical and Process EngineeringDepositing user: Pure Administrator Date deposited: 02 Aug 2018 13:44 Last modified: 11 Nov 2024 12:03 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/65004