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HEAT POWERED CYCLES 2021 Conference Proceedings

Authors: Riehl, Roger; Ilzarbe, Jesús María Blanco; Martín, Jesús Esarte San; Preißinger, Markus;

HEAT POWERED CYCLES 2021 Conference Proceedings

Abstract

This is the 9th Heat Powered Cycles Conference. The first edition of the conference was held at Nottingham in 1997. This time the event was co-organized by the University of the Basque Country, (Bilbao, Spain), The University of Applied Sciences, Vorarlberg, (Austria), and GamaTech Thermal Solutions, (Brazil). The conference took place at the University of the Basque Country and hosted by the Department of Energy Engineering at the University of the Basque Country by Prof. Jesús María Blanco Ilzarbe. In addition to formal presentations of technical papers, including invited Keynote papers, the event includes poster sessions and two Special Sessions, being one related to Intelligent Thermal Energy Systems and The Energy in the Post-Covid Scenario, along with a full social program. The conference is concerned with scientific and technological innovations relating to the efficient and economic use of heat, derived from all its sources, for the production of cooling, heating, and mechanical power either independently or co-generatively. Subject areas of particular interest include; hybrid cycles, ORCs, Stirling cycle machines, thermo-acoustic engines and coolers, sorption cycle refrigerators and heat pumps, jet-pump (ejector) machines, temperature amplifiers (heat transformers), chemical heat pumps, new working fluids, mass and heat transfer phenomena, desalination of brackish water and seawater, compact heat exchanger research (including foams and other micro-channel research), thermo-economics, process optimisation and modelling, process, and cycle thermodynamics.

Keywords

Thermodynamic Cycles, Sorption Cycles, Heat Transfer, Intelligent Thermal Energy Systems

21 references, page 1 of 3

[19] Motohashi, H., Goto, M., Sato, Y.

Development and field test of open cross flow type micro-waterturbines, The 14th National Symposium on Power and Energy System, 2010.

[20] Pereira N., Borges, J. A study on the efficiency of a cross-flow turbine based on experimental measurements, Proceedings of the 5th International Conference on Fluid Mechanics and Heat & Mass Transfer, 2014.

[21] Romero, F., Velásquez, L., Chica, E.

Consideraciones de diseño de una turbina Michell-Banki, Revista UIS Ingenierías, 2021.

[22] Lucino, C.V., Rivetti, A.,. Angulo, M.A., Rodrí guez. D., Liscia, S.O.

Funcionamiento de las turbinas Francis fuera de la condición de diseño, V Jornadas de Investigación, Transferencia y Extensión de la Facultad de Ingeniería, 2019.

[23] Resiga, R., Muntean, S., Ciocan, G.D.

Jet control of the draft tube vortex rope in Francis turbines at partial discharge, 23rd IAHR Symposium, 2006.

[24] Laouari, A., Ghenaiet, A. Investigation of Steady and Transient Cavitating Flows through a Small Francis Turbine, Renewable Energy, 2021. [OpenAIRE]

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citations
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
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Funded by
EC| CHESTER
Project
CHESTER
Compressed Heat Energy Storage for Energy from Renewable sources
  • Funder: European Commission (EC)
  • Project Code: 764042
  • Funding stream: H2020 | RIA
Validated by funder
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