Rodrigo Escobar, Ph.D.

Affiliations: 
2005 Carnegie Mellon University, Pittsburgh, PA 
Area:
Mechanical Engineering
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"Rodrigo Escobar"

Parents

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Cristina H. Amon grad student 2005 Carnegie Mellon
 (Lattice Boltzmann modeling of phonon transport in silicon films.)
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Publications

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Castillejo-Cuberos A, Escobar R. (2020) Understanding solar resource variability: An in-depth analysis, using Chile as a case of study Renewable & Sustainable Energy Reviews. 120: 109664
Hoyo MD, Rondanelli R, Escobar R. (2020) Significant decrease of photovoltaic power production by aerosols. The case of Santiago de Chile Renewable Energy. 148: 1137-1149
Simsek Y, Sahin H, Lorca Á, et al. (2020) Comparison of energy scenario alternatives for Chile: Towards low-carbon energy transition by 2030 Energy. 206: 118021
Simsek Y, Lorca Á, Urmee T, et al. (2019) Review and assessment of energy policy developments in Chile Energy Policy. 127: 87-101
Leiva-Illanes R, Escobar R, Cardemil JM, et al. (2019) Exergy cost assessment of CSP driven multi-generation schemes: Integrating seawater desalination, refrigeration, and process heat plants Energy Conversion and Management. 179: 249-269
Mena R, Escobar R, Lorca Á, et al. (2019) The impact of concentrated solar power in electric power systems: A Chilean case study Applied Energy. 235: 258-283
Simsek Y, Mata-Torres C, Guzmán AM, et al. (2018) Sensitivity and effectiveness analysis of incentives for concentrated solar power projects in Chile Renewable Energy. 129: 214-224
Marzo A, Ferrada P, Beiza F, et al. (2018) Standard or local solar spectrum? Implications for solar technologies studies in the Atacama desert Renewable Energy. 127: 871-882
Starke AR, Cardemil JM, Escobar R, et al. (2018) Multi-objective optimization of hybrid CSP+PV system using genetic algorithm Energy. 147: 490-503
Leiva-Illanes R, Escobar R, Cardemil JM, et al. (2018) Comparison of the levelized cost and thermoeconomic methodologies - Cost allocation in a solar polygeneration plant to produce power, desalted water, cooling and process heat Energy Conversion and Management. 168: 215-229
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