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Biodiesel fuel in diesel micro-turbine engines: Modelling and experimental evaluation

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dc.contributor.author Nascimento, MAR
dc.contributor.author Lora, ES
dc.contributor.author Correa, PSP
dc.contributor.author Andrade, RV
dc.contributor.author Rendon, MA
dc.contributor.author Venturini, OJ
dc.contributor.author Ramirez, GAS
dc.date.accessioned 2013-10-21T02:37:44Z
dc.date.available 2013-10-21T02:37:44Z
dc.identifier.uri http://dl.lib.mrt.ac.lk/handle/123/8754
dc.description.abstract Many performance and emission tests have been carried out in reciprocating diesel engines that use biodiesel fuel over the past years and very few in gas turbine engines. This work aims at assessing the thermal performance and emissions at full and partial loads of a 30 kW diesel micro-turbine engine fed with diesel, biodiesel and their blends as fuel. A cycle simulation was performed using the Gate Cycle GE Enter software to evaluate the thermal performance of the 30 kW micro-turbine engine. Performance and emission tests were carried out on a 30 kW diesel micro-turbine engine installed in the NEST laboratories of the Federal University of Itajuba, and the performance results were compared with those of the simulation. There was a good agreement between the simulations and the experimental results from the full load down to about 50% of the load for diesel, biodiesel and their blends. The biodiesel and its blends used as fuel in micro-turbines led to no significant changes in the engine performance and behaviour compared to diesel fuel. The exhaust emissions were evaluated for pure biodiesel and its blends and conventional diesel. The results revealed that the use of biodiesel resulted in a slightly higher CO, lower NOx and no SO2 emissions.
dc.language en
dc.subject Gas micro-turbine
dc.subject Biodiesel
dc.subject Simulation
dc.subject Performance tests
dc.title Biodiesel fuel in diesel micro-turbine engines: Modelling and experimental evaluation
dc.type Article-Full-text
dc.identifier.year 2008
dc.identifier.journal Energy
dc.identifier.issue 2
dc.identifier.volume 33
dc.identifier.database Science Direct
dc.identifier.pgnos 233-240


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