Zarza Moya, Eduardo Autor
Direct Steam Generation Boilers
- Valenzuela, L.
- Zarza, E.
- Berenguel, M.
- Camacho, E.F.
IEEE Control Systems - 1/04/2004
10.1109/mcs.2004.1275429 Ver en origen
- Cuartil JCR: Q1 (2004)
- Factor Impacto JCR: 1,803 (2022)
- Impacto Normalizado por Categoría: 1,181 (2004)
- CiteScore: 5,3 (2020)
- SJR: 1,459 (2004)
- SNIP: 4,058 (2004)
- Scopus
- ORCID
- Web of Science
Analysis of a failure mechanism in parabolic troughs receivers due to bellows cap overirradiation
- Valenzuela L.
- Setien E.
- Zarza E.
Engineering Failure Analysis - 1/04/2020
10.1016/j.engfailanal.2020.104491
- Cuartil SJR: Q1
- Factor Impacto JCR: 3,114 (2020)
- CiteScore: 4,6 (2020)
- SJR: 0,84 (2020)
- SNIP: 1,821 (2020)
- Impacto JCR a 5 años: 3,233
- Categorías JCR: MATERIALS SCIENCE, CHARACTERIZATION & TESTING
- Categorías SJR: Engineering (all) (Q1); Materials Science (all) (Q2)
- Scopus
- ORCID
- Web of Science
A new concept of solar thermal power plants with large-aperture parabolic-trough collectors and sCO(2) as working fluid
- Biencinto M.
- González L.
- Valenzuela L.
- Zarza E.
ENERGY CONVERSION AND MANAGEMENT - 1/11/2019
10.1016/j.enconman.2019.112030
- Cuartil JCR: Q1 (2019)
- Cuartil SJR: Q1
- Factor Impacto JCR: 8,208 (2022)
- Impacto Normalizado por Categoría: 1,554 (2019)
- CiteScore: 15,9 (2020)
- SJR: 2,924 (2019)
- SNIP: 2,349 (2019)
- Impacto JCR a 5 años: 7,447
- Categorías JCR: THERMODYNAMICS
- Categorías SJR: Energy Engineering and Power Technology (Q1); Fuel Technology (Q1); Nuclear Energy and Engineering (Q1); Renewable Energy, Sustainability and the Environment (Q1)
- Scopus
- ORCID
- Web of Science
Performance model and annual yield comparison of parabolic-trough solar thermal power plants with either nitrogen or synthetic oil as heat transfer fluid
- Biencinto, Mario
- Gonzalez, Lourdes
- Zarza, Eduardo
- Diez, Luis E.
- Munoz-Anton, Javier
ENERGY CONVERSION AND MANAGEMENT - 1/11/2014
10.1016/j.enconman.2014.07.017 Ver en origen
- Cuartil SJR: Q1
- Factor Impacto JCR: 4,38 (2014)
- CiteScore: 15,9 (2020)
- SJR: 1,789 (2014)
- SNIP: 2,79 (2014)
- Impacto JCR a 5 años: 4,512
- Categorías JCR: PHYSICS, NUCLEAR
- Categorías SJR: Energy Engineering and Power Technology (Q1); Fuel Technology (Q1); Nuclear Energy and Engineering (Q1); Renewable Energy, Sustainability and the Environment (Q1)
- Scopus
- ORCID
- Web of Science
Review and validation of Solar Thermal Electricity potential methodologies
- Navarro, Ana A.
- Ramirez, Lourdes
- Dominguez, Pablo
- Blanco, Manuel
- Polo, Jesus
- Zarza, Eduardo
Energy Conversion and Management - 15/10/2016
10.1016/j.enconman.2016.07.070 Ver en origen
- Cuartil SJR: Q1
- Factor Impacto JCR: 5,589 (2016)
- CiteScore: 15,9 (2020)
- SJR: 2,232 (2016)
- SNIP: 2,11 (2016)
- Impacto JCR a 5 años: 5,472
- Categorías JCR: ENERGY & FUELS
- Categorías SJR: Energy Engineering and Power Technology (Q1); Fuel Technology (Q1); Nuclear Energy and Engineering (Q1); Renewable Energy, Sustainability and the Environment (Q1)
- Scopus
- ORCID
- Web of Science
Influence of the displacement of solar receiver tubes on the performance of a parabolic-trough collector
- Aichouba A.
- Merzouk M.
- Valenzuela L.
- Zarza E.
- Kasbadji-Merzouk N.
ENERGY - 15/9/2018
- Cuartil SJR: Q1
- Factor Impacto JCR: 5,537 (2018)
- CiteScore: 11,5 (2020)
- SJR: 2,048 (2018)
- SNIP: 1,85 (2018)
- Impacto JCR a 5 años: 5,747
- Categorías JCR: THERMODYNAMICS
- Categorías SJR: Building and Construction (Q1); Civil and Structural Engineering (Q1); Electrical and Electronic Engineering (Q1); Energy (miscellaneous) (Q1); Industrial and Manufacturing Engineering (Q1); Mechanical Engineering (Q1); Pollution (Q1)
- Scopus
- ORCID
- Web of Science
Optical and thermal performance of large-size parabolic-trough solar collectors from outdoor experiments: A test method and a case study
- Valenzuela, Loreto
- Lopez-Martin, Rafael
- Zarza, Eduardo
ENERGY - 1/06/2014
10.1016/j.energy.2014.04.016 Ver en origen
- Cuartil SJR: Q1
- Factor Impacto JCR: 4,844 (2014)
- CiteScore: 11,5 (2020)
- SJR: 2,575 (2014)
- SNIP: 2,6 (2014)
- Impacto JCR a 5 años: 5,153
- Categorías JCR: ENERGY & FUELS
- Categorías SJR: Building and Construction (Q1); Civil and Structural Engineering (Q1); Electrical and Electronic Engineering (Q1); Energy (miscellaneous) (Q1); Industrial and Manufacturing Engineering (Q1); Mechanical Engineering (Q1); Pollution (Q1)
- Scopus
- ORCID
- Web of Science
Feasibility and practical limits of full decarbonization of the electricity market with renewable energy: Application to the Spanish power sector
- Bonilla J.
- Blanco J.
- Zarza E.
- Alarcón-Padilla D.C.
Energy - 1/1/2021
- Factor Impacto JCR: 8,857 (2021)
- CiteScore: 13,4 (2021)
- SJR: 2,041 (2021)
- SNIP: 2,038 (2021)
- Impacto JCR a 5 años: 8,234
- Categorías JCR: ENERGY & FUELS
SMALL-SIZED parabolic-trough solar collectors: Development of a test loop and evaluation of testing conditions
- Fernández-García A.
- Valenzuela L.
- Zarza E.
- Rojas E.
- Pérez M.
- Hernández-Escobedo Q.
- Manzano-Agugliaro F.
Energy - 1/06/2018
- Cuartil JCR: Q1 (2018)
- Cuartil SJR: Q1
- Factor Impacto JCR: 5,537 (2022)
- Impacto Normalizado por Categoría: 0,689 (2018)
- CiteScore: 11,5 (2020)
- SJR: 2,048 (2018)
- SNIP: 1,85 (2018)
- Impacto JCR a 5 años: 5,747
- Categorías JCR: THERMODYNAMICS
- Categorías SJR: Building and Construction (Q1); Civil and Structural Engineering (Q1); Electrical and Electronic Engineering (Q1); Energy (miscellaneous) (Q1); Industrial and Manufacturing Engineering (Q1); Mechanical Engineering (Q1); Pollution (Q1)
- Scopus
- ORCID
- Web of Science
Modeling and Hourly Time-Scale Characterization of the Main Energy Parameters of Parabolic-Trough Solar Thermal Power Plants Using a Simplified Quasi-Dynamic Model
- Ignacio Javier Arias Olivares
- Eduardo Zarza
- LORETO VALENZUELA
- Manuel Pérez-García
- Jose Alfonso Romero Ramos
- Rodrigo Escobar
Energies - 4/01/2021
- Cuartil JCR: Q3 (2021)
- Factor Impacto JCR: 3,252 (2022)
- Impacto Normalizado por Categoría: 0,453 (2021)
- CiteScore: 4,7 (2020)
- SJR: 0,598 (2020)
- SNIP: 1,161 (2020)
- Impacto JCR a 5 años: 3,333
- Categorías JCR: ENERGY & FUELS
- Scopus
- ORCID
- OAI-PMH
- Web of Science
Concentrating solar thermal power
- Romero M.
- Gonzalez-Aguilar J.
- Zarza E.
Energy Efficiency and Renewable Energy: Handbook, Second Edition - 1/1/2015
Concentrating solar thermal power
- Romero M.
- Gonzalez-Aguilar J.
- Zarza E.
Energy Conversion, Second Edition - 1/1/2017
New PSA High Concentration Solar Furnace SF40
- Rodriguez, J.
- Canadas, I.
- Zarza, E.
SOLARPACES 2015: INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS - 31/5/2016
10.1063/1.4949175 Ver en origen
- CiteScore: 0,7 (2020)
- SJR: 0,165 (2016)
- SNIP: 0,241 (2016)
- Scopus
- ORCID
- Web of Science
INDITEP: The first pre-commercial DSG solar power plant
- Zarza, E.
- Rojas, M.E.
- González, L.
- Caballero, J.M.
- Rueda, F.
SOLAR ENERGY - 1/10/2006
10.1016/j.solener.2005.04.019 Ver en origen
- Cuartil SJR: Q1
- CiteScore: 8,9 (2020)
- SJR: 1,594 (2006)
- SNIP: 2,246 (2006)
- Categorías SJR: Materials Science (miscellaneous) (Q1); Renewable Energy, Sustainability and the Environment (Q1)
- Scopus
- ORCID
- Web of Science
Saturated steam process with direct steam generating parabolic troughs
- Eck, M.
- Zarza, E.
SOLAR ENERGY - 1/11/2006
10.1016/j.solener.2006.03.011 Ver en origen
- Cuartil SJR: Q1
- CiteScore: 8,9 (2020)
- SJR: 1,594 (2006)
- SNIP: 2,246 (2006)
- Categorías SJR: Materials Science (miscellaneous) (Q1); Renewable Energy, Sustainability and the Environment (Q1)
- Scopus
- ORCID
- Web of Science
Development steps for parabolic trough solar power technologies with maximum impact on cost reduction
- Pitz-Paal, R.
- Dersch, J.
- Milow, B.
- Téllez, F.
- Fernere, A.
- Langnickel, U.
- Steinfeld, A.
- Karni, J.
- Zarza, E.
- Popel, O.
JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME - 1/11/2007
10.1115/1.2769697 Ver en origen
- Cuartil SJR: Q1
- CiteScore: 4,3 (2020)
- SJR: 0,516 (2007)
- SNIP: 1,019 (2007)
- Categorías SJR: Energy Engineering and Power Technology (Q1); Renewable Energy, Sustainability and the Environment (Q2)
- Scopus
- ORCID
- Web of Science
Direct solar steam generation in parabolic troughs (DISS). Update on project status and future planning
- Hennecke, K.
- Zarza, E.
Journal De Physique. IV : JP - 1/03/1999
10.1051/jp4:1999374 Ver en origen
- Scopus
- ORCID
- Web of Science
The DISS project: Direct steam generation in parabolic troughs operation and maintenance experience update on project status
International Solar Energy Conference - 1/12/2001
- SJR: 0,156 (2001)
- Categorías SJR: Renewable Energy, Sustainability and the Environment; Space and Planetary Science
- Scopus
- ORCID
Eurotrough design issues and prototype testing at PSA
International Solar Energy Conference - 1/12/2001
- SJR: 0,156 (2001)
- Categorías SJR: Renewable Energy, Sustainability and the Environment; Space and Planetary Science
- Scopus
- ORCID
Project DISS technological program on solar power plants with parabolic troughs and direct solar steam generation
- Zarza E.
- Ajona J.
- Hennecke K.
International Solar Energy Conference - 1/1/1997
- Scopus
- ORCID
Development steps for concentrating solar power technologies with maximum impact on cost reduction : - Results of the european ECOSTAR study
- Pitz-Paal, R.
- Dersch, J.
- Milow, B.
- Téllez, F.
- Ferriere, A.
- Langnickel, U.
- Steinfeld, A.
- Karni, J.
- Zarza, E.
- Popel, O.
International Solar Energy Conference - 1/12/2005
10.1115/isec2005-76081 Ver en origen
- SJR: 0,182 (2005)
- SNIP: 0,309 (2005)
- Scopus
- ORCID
- Web of Science
Concentrating solar power plants - How to achieve competitiveness
- Pitz-Paal R.
- Dersch J.
- Milow B.
- Téllez F.
- Ferriere A.
- Langnickel U.
- Steinfeld A.
- Kami J.
- Zarza E.
- Popel O.
VGB PowerTech - 3/10/2005
- Cuartil SJR: Q3
- SJR: 0,196 (2005)
- SNIP: 0,36 (2005)
- Categorías SJR: Electrical and Electronic Engineering (Q3)
- Scopus
- ORCID
Índice h
Scopus: 25
Web of Science: 25
Índice i10
Scopus: 38
Web of Science: 34
Perfiles de autor
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Proyectos de investigación en la UAL
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Acrónimo P10-RNM-05927Desde: 15 de marzo de 2011Hasta: 15 de marzo de 2014Financiado por: JUNTAImporte de financiación: 120.280,00 EURRol: Investigador