Gerard Laguna Benet
Descarregar PdfDades personals-contacte / Datos personales-contacto / Personal information-contact
Nom/Nombre/Name: |
Gerard Laguna Benet |
Categoria/Categoría/Category: |
Professor associat / Profesor asociado / Adjunct lecturer |
Àrea/Área/Area: |
Enginyeria i física / Ingeniería i física / Engineering and physics |
Departament/Departamento/Department: |
Química, Física, Ciències Ambientals i del Sòl / Química, Física, Ciencias Ambientales y del Suelo / Chemistry, Physics, Environmental and Soil Sciences |
Centre/Centro/Center: |
Escola Politècnica Superior / Escuela Politécnica Superior/ Polytechnic School |
Despaxt/Despacho/Office: |
Campus de Cappont. Edifici CREA. Despatx 0.13-14 / Campus de Cappont. Edificio CREA. Despacho 0.13-14 / Campus of Cappont. CREA Building. Office 0.13-14 |
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gerard.laguna@udl.cat |
|
+34 973 00 35 80 |
Code ORCID: |
https://orcid.org/0000-0002-7514-9243 |
Formació acadèmica / Formación académica / Academic training
- Grau en Enginyeria de l’Energia
- Màster en Industrials
- Doctorat en Enginyeria
- Grado en Ingeniería de la Energía
- Master en ingeniería industrial
- Doctorado en Ingeniería
- Degree in Energy Engineering
- Master in Industrial Engineering
- PhD in Engineering
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Experiència professional / Experiencia profesional / Professional experience
Tècnic de laborator
Técnico de Laboratorio
Docència / Docencia / Teaching
- Tronc comú de les enginyeries industrials
- Grau en Arquitectura Tècnica i Edificació
- Grau en Enginyeria Mecànica
- Grau en Enginyeria de l'Energia i Sostenibilitat
- Grau en Enginyeria Electrònica Industrial i Automàtica
- Parte común de las ingenierías industriales
- Grado en Arquitectura Técnica y Edificación
- Grado en Ingeniería Mecánica
- Grado en Ingeniería de la Energía y Sostenibilidad
- Grado en Ingeniería Electrónica Industrial y Automática
- Common part of industrial engineering
- Degree in Technical Architecture and Building
- Degree in Mechanical Engineering
- Degree in Energy Engineering and Sustainability
- Degree in Industrial Electronic and Automatic Engineering
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Gestió / Gestión / Management
Recerca / Investigación / Research
Àmbit de recerca / Ambito de investigación / Research area
- Refrigeració de microelectrònica
- Microfluídica
- Fotovoltaica de concentració
- Refrigeracion en microelectonica
- Microfluidica
- Fotovoltaica de concentración
- Refrigeration in microelectonics
- Microfluidics
- Concentration photovoltaic
Activitats de recerca / Actividades de investigación / Research activities
Projectes:
- Demostració experimental i viabilitat comercial d’un sistema universal i energèticament eficient de refredament. (AGAUR – Indústria del Coneixement)
- Smart Technologies for eneRgy Efficient Active cooling in Advanced Microelectronic Systems (STREAMS) (European Commission H2020)
Articles:
-Impact of the self-adaptive valve behavior on an array of microfluidic cells under unsteady and non-uniform heat load distributions https://doi.org/10.36884/jafm.12.SI.29918
- Numerical parametric study of a hotspot-targeted microfluidic cooling array for microelectronics. https://doi.org/10.1016/j.applthermaleng.2018.08.030
- Experimental and numerical study of micro-pin-fin heat sinks with variable density for increased temperature uniformity. https://doi.org/10.1016/j.ijthermalsci.2018.06.019
- Assessment of the impact of non-uniform illumination and temperature profiles on a dense array CPV receiver performance. https://doi.org/10.1016/j.solener.2018.07.001
- Smoothing effect of the thermal interface material on the temperature distribution in a stepwise varying width microchannel cooling Device. https://doi.org/10.1007/s00231-017-2045-0
Proyectos:
- Demostració experimental i viabilitat comercial d’un sistema universal i energèticament eficient de refredament. (AGAUR – Indústria del Coneixement)
- Smart Technologies for eneRgy Efficient Active cooling in Advanced Microelectronic Systems (STREAMS) (European Commission H2020)
Articulos:
-Impact of the self-adaptive valve behavior on an array of microfluidic cells under unsteady and non-uniform heat load distributions https://doi.org/10.36884/jafm.12.SI.29918
- Numerical parametric study of a hotspot-targeted microfluidic cooling array for microelectronics. https://doi.org/10.1016/j.applthermaleng.2018.08.030
- Experimental and numerical study of micro-pin-fin heat sinks with variable density for increased temperature uniformity. https://doi.org/10.1016/j.ijthermalsci.2018.06.019
- Assessment of the impact of non-uniform illumination and temperature profiles on a dense array CPV receiver performance. https://doi.org/10.1016/j.solener.2018.07.001
- Smoothing effect of the thermal interface material on the temperature distribution in a stepwise varying width microchannel cooling Device. https://doi.org/10.1007/s00231-017-2045-0
Projects:
- Demostració experimental i viabilitat comercial d’un sistema universal i energèticament eficient de refredament. (AGAUR – Indústria del Coneixement)
- Smart Technologies for eneRgy Efficient Active cooling in Advanced Microelectronic Systems (STREAMS) (European Commission H2020)
Articles:
-Impact of the self-adaptive valve behavior on an array of microfluidic cells under unsteady and non-uniform heat load distributions https://doi.org/10.36884/jafm.12.SI.29918
- Numerical parametric study of a hotspot-targeted microfluidic cooling array for microelectronics. https://doi.org/10.1016/j.applthermaleng.2018.08.030
- Experimental and numerical study of micro-pin-fin heat sinks with variable density for increased temperature uniformity. https://doi.org/10.1016/j.ijthermalsci.2018.06.019
- Assessment of the impact of non-uniform illumination and temperature profiles on a dense array CPV receiver performance. https://doi.org/10.1016/j.solener.2018.07.001
- Smoothing effect of the thermal interface material on the temperature distribution in a stepwise varying width microchannel cooling Device. https://doi.org/10.1007/s00231-017-2045-0
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