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Dive into the research topics where José Ignacio Linares is active.

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Featured researches published by José Ignacio Linares.


Nuclear Technology | 2007

Assessment of Regenerative Reheating in Direct Brayton Power Cycles for High-Temperature Gas-Cooled Reactors

L.E. Herranz; José Ignacio Linares; B.Y. Moratilla

Future world energy demand will require a sustainable energy generation system. Optimization of power cycles has become a key element to better exploit natural resources, to minimize waste production, and even to reduce fuel cycle cost. Aware of this, nuclear technology is developing what has been termed Generation IV designs. In particular, the high-temperature gas-cooled reactor (HTGR) concept is a promising technology to reach much higher thermal efficiencies than present nuclear power plants. By using a classical thermodynamic methodology, this paper demonstrates that regenerative reheating would significantly enhance the thermal performance of a reference Brayton cycle based on pebble bed modular reactor (PBMR) technology. The regenerative reheating is conducted by a live gas fraction (β) extracted from the coolant inventory exiting the nuclear reactor. Optimization of β results in efficiency values as high as 53 and 61%, respectively, under current and midterm technology scenarios. In addition, reheating would allow an effective and easy-to-conduct “load-follow” operation with no loss of thermal efficiency in the upper range of β. Even further, under the midterm technology scenario, reheating would make it possible to cogenerate H2 from the enthalpy content of the β fraction exiting reheater.


Renewable Energy | 2014

Techno-economic feasibility assessment of a biomass cogeneration plant based on an Organic Rankine Cycle.

María Uris; José Ignacio Linares; Eva Arenas


Applied Thermal Engineering | 2009

Power cycle assessment of nuclear high temperature gas-cooled reactors

L.E. Herranz; José Ignacio Linares; B.Y. Moratilla


Energy | 2015

Size optimization of a biomass-fired cogeneration plant CHP/CCHP (Combined heat and power/Combined heat, cooling and power) based on Organic Rankine Cycle for a district network in Spain

María Uris; José Ignacio Linares; Eva Arenas


Nuclear Engineering and Design | 2012

Thermal analysis of supercritical CO2 power cycles: Assessment of their suitability to the forthcoming sodium fast reactors

G.D. Pérez-Pichel; José Ignacio Linares; L.E. Herranz; B.Y. Moratilla


Fusion Engineering and Design | 2011

Power conversion systems based on Brayton cycles for fusion reactors

José Ignacio Linares; L.E. Herranz; B.Y. Moratilla; I.P. Serrano


Applied Thermal Engineering | 2015

Supercritical CO2 Brayton power cycles for DEMO fusion reactor based on Helium Cooled Lithium Lead blanket

José Ignacio Linares; L.E. Herranz; Iván Fernández; Alexis Cantizano; B.Y. Moratilla


Fusion Engineering and Design | 2014

Enhanced arrangement for recuperators in supercritical CO2 Brayton power cycle for energy conversion in fusion reactors

I.P. Serrano; José Ignacio Linares; Alexis Cantizano; B.Y. Moratilla


Energy | 2016

Supercritical CO2 Brayton power cycles for DEMO (demonstration power plant) fusion reactor based on dual coolant lithium lead blanket

José Ignacio Linares; Alexis Cantizano; B.Y. Moratilla; Víctor Martín-Palacios; Lluis Batet


Sustainable Energy Technologies and Assessments | 2014

Sizing of thermal energy storage devices for micro-cogeneration systems for the supply of domestic hot water

Antonio S. Ibáñez; José Ignacio Linares; María M. Cledera; B.Y. Moratilla

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B.Y. Moratilla

Comillas Pontifical University

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Alexis Cantizano

Comillas Pontifical University

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L.E. Herranz

Complutense University of Madrid

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Eva Arenas

Comillas Pontifical University

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I.P. Serrano

Comillas Pontifical University

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María Uris

Comillas Pontifical University

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Antonio S. Ibáñez

Comillas Pontifical University

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G.D. Pérez-Pichel

Comillas Pontifical University

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Iván Fernández

Complutense University of Madrid

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Lluís Batet Miracle

Polytechnic University of Catalonia

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