2022
DOI: 10.3390/su142416488
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Experimental and Numerical Characterisation of a Non-Tubular Stirling Engine Heater for Biomass Applications

Abstract: In the current context of environmental deterioration and rising energy costs, systems based on Stirling engines are interesting not only because of their proven efficiency and very low noise level, but also because of their ability to use renewable energies. Micro-CHP units based on Stirling engines fuelled by both solar energy and biomass can reduce CO2 emissions on a household scale, but the second option avoids problems usually related to the intermittency of solar energy. This paper describes the geometry… Show more

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Cited by 5 publications
(2 citation statements)
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“…Typically, the main research direction in studies retrieved based on the dedicated search string for RQ2 is concerned with the experimental investigation of the technical improvement opportunities of Stirling engine and CHP integrated systems [44][45][46][47] or comparison of experimental and simulation data [48,49]. The clustering of the retrieved documents allowed the authors to identify a research sub-direction on Stirling engine and fluidized bed combustor integration [45,50].…”
Section: Qualitative Analysis-tendencies Of Stirling Engine Biomass C...mentioning
confidence: 99%
“…Typically, the main research direction in studies retrieved based on the dedicated search string for RQ2 is concerned with the experimental investigation of the technical improvement opportunities of Stirling engine and CHP integrated systems [44][45][46][47] or comparison of experimental and simulation data [48,49]. The clustering of the retrieved documents allowed the authors to identify a research sub-direction on Stirling engine and fluidized bed combustor integration [45,50].…”
Section: Qualitative Analysis-tendencies Of Stirling Engine Biomass C...mentioning
confidence: 99%
“…Stirling engines have emerged as a subject of substantial research and development in recent years. Their importance stems from their capability to operate from a diverse array of heat sources, including biomass [1], solar [2] and waste heat [3], and thus hold an immense potential to address the challenges of energy sustainability and climate change. The compatibility of these engines with alternative fuels combined with their high thermal efficiencies and quiet operation makes them suitable for various different uses, including power generation, co-generation, heating, and cooling.…”
Section: Introductionmentioning
confidence: 99%