2015
DOI: 10.1016/j.egypro.2015.12.124
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Thermodynamic Transient Simulation of a Combined Heat & Power System

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Cited by 7 publications
(7 citation statements)
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“…Hydrogen-to-electricity efficiencies are: about 30% for LTFC; 45% for H2 turbines operating in an open cycle; 50% for HTFC (SOFC) and up to 60% for H2 turbines operating in a combined cycle [13], with the potential to increase to 80%. Combining power generation with district heating creates a cogeneration (2G) system [13,14] for which both LTFC and HTFC are suitable. Large scale HTFC or H2 turbines will be the most suitable systems for combined cycle plants [13,14].…”
Section: H2-fueled Power Generation Technologies [23]mentioning
confidence: 99%
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“…Hydrogen-to-electricity efficiencies are: about 30% for LTFC; 45% for H2 turbines operating in an open cycle; 50% for HTFC (SOFC) and up to 60% for H2 turbines operating in a combined cycle [13], with the potential to increase to 80%. Combining power generation with district heating creates a cogeneration (2G) system [13,14] for which both LTFC and HTFC are suitable. Large scale HTFC or H2 turbines will be the most suitable systems for combined cycle plants [13,14].…”
Section: H2-fueled Power Generation Technologies [23]mentioning
confidence: 99%
“…Combining power generation with district heating creates a cogeneration (2G) system [13,14] for which both LTFC and HTFC are suitable. Large scale HTFC or H2 turbines will be the most suitable systems for combined cycle plants [13,14]. The FC plant consists of FC stacks connected in series, plus the balance of the plant consisting of pumps, compressors, power converters, cooling circuits and other small components [10][11][12].…”
Section: H2-fueled Power Generation Technologies [23]mentioning
confidence: 99%
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“…Energy systems integration plays an important role in distributed generation efficiency. An example of system integration is provided by Borelli et al in [16]. Here, authors used a numerical dynamic model to study the transients of the integrated system made of a CHP unit coupled to a district heating network (DHN).…”
Section: Introductionmentioning
confidence: 99%
“…A description of the thermodynamic and numerical model of the CHP and of the turboexpander can be found in [34,35]. …”
mentioning
confidence: 99%