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  • Authors: J. de la Casa; G. Almonacid; D.L. Lopez Talavera; Pedro Pérez-Higueras; +8 Authors

    The integration of Grid-Connected PV systems into buildings or public areas is one of the most usual applications of the photovoltaic solar energy in developed countries. Since early 2009, the University is working on an ambitious project, the so-called UNIVERSOL project, where its main goal is to convert the University Campus in a big public area which combines the PV electricity generation with the common uses of a university place. The aim of this paper is to show to the scientific community the main results of this project and that the methodology proposed for the “large urban-area photovoltaic potential” estimation can be easily exportable to other locations with similar characteristics, so the photovoltaic generators integration examples proposed in this project, and the software tools used to represent it, can be helpful for other designers, taking into account that this project has been adapted to the new Spanish legislation. 26th European Photovoltaic Solar Energy Conference and Exhibition; 4068-4072

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  • Authors: Friederike Kersten; Görig; P. Wawer; R. Doll; +4 Authors

    Photovoltaic (PV) is one of the fastest growing electricity generation technologies in the world. Average annual growth rates of global PV-installations have reached around 45% for the last 15 years, which triggered a fast and ongoing reduction of production cost in PV industry. The presented work aims at consolidating historical price and cost information, deriving refined learning curves for PV modules and systems, and analysing the main factors of learning. For c-Si modules a valid learning rate of 17% is found based on a meta-analysis of various studies. In early years, even a learning rate of 30% is observed. As an example for thin-film PV, CdTe module cost reduce by 16% as the cumulated production output doubles. Interestingly, efficiency improvements contribute only in second order to the overall cost reduction for both technologies, emphasising the relevance of production excellence and economies of scale. On PV system level, a cost reduction of 14% per doubling of cumulated installed capacity is derived. Finally, a sensitivity analysis reveals that learning rate variations are only of minor influence on the overall global PV market potential. 26th European Photovoltaic Solar Energy Conference and Exhibition; 4697-4702

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Costa, Andrea; Sterling, Raymond; Blanes, Luis M; Howley, Martin; +1 Authors

    This paper presents a research work carried out under the umbrella of the CASCADE project, which is a European FP7 research project which is developing facility-specific measurement-based energy action plans for the airport energy managers that are underpinned by Fault Detection Diagnosis (FDD). The paper first describes the context of the project then it focuses on Building Management Systems describing the current status of the technology and presenting an outlook on their future development. Then a Strengths Weakness Opportunity and Treads (SWOT) framework is defined with the aim of verifying the suitability of an installed BMS system to incorporate Fault Detection and Diagnosis (FDD) tools

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    Conference object . 2013
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    Other literature type . 2013
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    Conference object . 2013
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    https://dx.doi.org/10.13025/18...
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    Authors: Ren, Haikun; Hacks, Alexander; Schuster, Sebastian; Brillert, Dieter;

    In order to develop the technology of carbon dioxide at so-called supercritical state (sCO2) further, quick and reliable design tools for the different system components, e.g. centrifugal compressors, are required. In this study, a computer program is developed to predict the performance of centrifugal compressors with sCO2 as working fluid. This computer program is based on mean-line analysis, calculates the fluid parameters at selected sections of the meridional plane and plots the performance maps. So-called enthalpy loss coefficients are utilized to describe the difference between the isentropic and the polytropic process. In addition to previous studies, the presented model intends to predict the performance of sCO2 centrifugal compressor with a shrouded impeller and a vaneless diffuser. For this purpose, corresponding loss coefficients are incorporated. Subsequently, the predicted results of this work are compared and validated with computational fluid dynamics (CFD) and experimental results from the EU-project sCO2-HeRo. The prediction of the computer program fits within 5% deviation to the CFD results, and about 4% to the experimental results regarding to pressure ratio. Conference Proceedings of the European sCO2 Conference4th European sCO2 Conference for Energy Systems: March 23-24, 2021, Online Conference, p. 68

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    https://dx.doi.org/10.17185/du...
    Other literature type . 2021
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      https://dx.doi.org/10.17185/du...
      Other literature type . 2021
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    Authors: Ana Sánchez-Ostiz; Aurora Monge-Barrio; Miren Juaristi; T. Gómez-Acebo;

    Climate Adaptive Facades are considered promising breakthroughs for the reduction of energy consumption, as energy exchange is enabled when the weather conditions offer benefits instead of threats. So far, conventional building envelops enhance thermal performance through opaque fa��ade components and static insulations. Therefore, natural resources from the building environment remain untapped. Little research has been done in Adaptive Opaque Facades, even if their dynamic behaviour shows a strong potential to exploit environmental resources. For the successful development of these innovative fa��ade systems, a balance between sophistication and benefit is necessary. To manage this objective, the implementation of Smart and Multifunctional Materials in the envelopes seems promising, as they are able to repeatedly and reversibly change some of its functions, features or behaviour over time in response to environmental condition. Consequently, to trigger the response of the envelope, no external actuator or complex software management would be necessary. Nevertheless, these materials do not fulfil all the fa��ade requirements by themselves. Thus, they need to be combined with other adaptive technologies and building elements. This paper shows an initial definition of different fa��ade configurations that include reactive materials which enable the adaptiveness of Opaque Fa��ade Systems. The desired results are new facade roles suitable for a temperate climate, according to the potential of these multi-performance materials in the external layer of the envelope: the dynamic temperature change of the external cladding through the solar reflectance change and the enhancement or prevention of thermal loses through Shape Changing Ventilated Facades. To achieve these new high performances, an ideal approach to the thermal behaviour of each fa��ade layer was done and required physical properties of each elements were highlighted. As a result, we propose a mapping of potentially suitable combination of reactive materials with other building elements that might enable the holistic adaptive thermal performance. Journal of Facade Design and Engineering, Vol. 6 No. 2 (2018): Special Issue ICAE2018

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    https://dx.doi.org/10.7480/jfd...
    Article . 2018
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    Authors: Carbajo, Sergio; Fallahi, Arya; Arrieta, Miguel; Huang, Wenqian; +4 Authors

    4th Banff Meeting on Structural Dynamics, Banff, Alberta, Canada, 15 Feb 2015 - 18 Feb 2015 ; (2015).

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    Authors: Van Leeuwen, Coen; Bouter, Cornelis; Hindriks, Rick; Wilterdink, Robert;

    The Industry 4.0 Asset Administration Shell provides a standardized mechanism for collaboration between digital systems in the factory. Digital data within factories is typically stored in databases, we explore the requirements of providing an AAS as an interface to the data contained within the aforementioned databases. Based on these requirements, we describe and discuss a proof-of-concept implementation where an AAS is used to publish data stored in a relational database.

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    Authors: Suardi, A.; Stefanoni, W.; Latterini, F.; Pari, R.; +3 Authors

    Among the species cultivated for industrial vegetable oil production, castor could be a good crop for future investments due to the good resistance to pests, tolerance to drought, and suitability for marginal lands cultivation. The paper presents results of the environmental impact assessment and economic feasibility of the production of castor oil from two different castor hybrids comparing four by-products management scenarios and two harvesting systems. Castor hybrid C-856 harvested manually and that involved only the soil incorporation of press cake obtained by the oil extraction resulted as the most sustainable. The hybrid C-1030 resulted as more profitable than C-856 when harvested with the combine harvester. The ratio between gross margin and GWP emissions was applied to calculate the economic performance (gross margin) per unit of environmental burden. Findings showed that Sc1B scenario in case of C-856 cultivar hybrid had a better ratio between economic performance and greenhouse gas (GHG) emitted into the atmosphere (€3.75 per kg CO2eq). Proceedings of the 29th European Biomass Conference and Exhibition, 26-29 April 2021, Online, pp. 1184-1188

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  • Authors: E. Muñoz-Cerón; M.J. del Jesus; P.G. Gómez Vidal; D.L. Lopez Talavera; +7 Authors

    The integration of grid-connected PV systems into buildings or public areas is one of the most usual applications of the photovoltaic solar energy in developed countries. The University of Jaén (Spain) is a pioneering public organism in the field of grid-connected PV systems, as it proves the milestones developed by its IDEA research group in the last decades. The University is working in an ambitious project, the so-called UNIVERSOL project, where the necessary tasks are being carried out in order to evaluate the “photovoltaic potential” of the Campus of the University. For the implementation of this project, there are participating diverse research groups from the University of Jaén, which gives the project a multidisciplinary character. The different tasks assigned in the Universol project will let us obtain a Large-Scale deployment of photovoltaic systems in building integration, so it will convert this Campus in a big public area which combines the PV electricity generation with the common uses of a university place. 25th European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain; 5212-5216

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    Authors: Carrillo Salinas, José Manuel; Muñoz Cano, Javier; Makibar Puente, Aitor; Luna, Alberto; +1 Authors

    This paper presents a description of an open-source simulation tool (features, models and calculation procedures) that has been developed under the support of the European project called PVCROPS. The main advantage of this tool is that it uses as input just parameters guaranteed by the manufacturers of the different components of a PV plant. This way, it can be used in contractual frameworks to establish the expected energy yield of a PV plant, to check the actual performance of the PV plant with quality contractual procedures linked to SISIFO, and to assign responsibilities in the case of underperformance. The tool provides, among other simulation results, the energy yield, the analysis and breakdown of energy losses, and financial analysis. Furthermore the software can generate a technical report with the results obtained in the simulation. 31st European Photovoltaic Solar Energy Conference and Exhibition; 2190-2192

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    Conference object . 2015 . Peer-reviewed
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    Conference object . 2015
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  • Authors: J. de la Casa; G. Almonacid; D.L. Lopez Talavera; Pedro Pérez-Higueras; +8 Authors

    The integration of Grid-Connected PV systems into buildings or public areas is one of the most usual applications of the photovoltaic solar energy in developed countries. Since early 2009, the University is working on an ambitious project, the so-called UNIVERSOL project, where its main goal is to convert the University Campus in a big public area which combines the PV electricity generation with the common uses of a university place. The aim of this paper is to show to the scientific community the main results of this project and that the methodology proposed for the “large urban-area photovoltaic potential” estimation can be easily exportable to other locations with similar characteristics, so the photovoltaic generators integration examples proposed in this project, and the software tools used to represent it, can be helpful for other designers, taking into account that this project has been adapted to the new Spanish legislation. 26th European Photovoltaic Solar Energy Conference and Exhibition; 4068-4072

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  • Authors: Friederike Kersten; Görig; P. Wawer; R. Doll; +4 Authors

    Photovoltaic (PV) is one of the fastest growing electricity generation technologies in the world. Average annual growth rates of global PV-installations have reached around 45% for the last 15 years, which triggered a fast and ongoing reduction of production cost in PV industry. The presented work aims at consolidating historical price and cost information, deriving refined learning curves for PV modules and systems, and analysing the main factors of learning. For c-Si modules a valid learning rate of 17% is found based on a meta-analysis of various studies. In early years, even a learning rate of 30% is observed. As an example for thin-film PV, CdTe module cost reduce by 16% as the cumulated production output doubles. Interestingly, efficiency improvements contribute only in second order to the overall cost reduction for both technologies, emphasising the relevance of production excellence and economies of scale. On PV system level, a cost reduction of 14% per doubling of cumulated installed capacity is derived. Finally, a sensitivity analysis reveals that learning rate variations are only of minor influence on the overall global PV market potential. 26th European Photovoltaic Solar Energy Conference and Exhibition; 4697-4702

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    Authors: Costa, Andrea; Sterling, Raymond; Blanes, Luis M; Howley, Martin; +1 Authors

    This paper presents a research work carried out under the umbrella of the CASCADE project, which is a European FP7 research project which is developing facility-specific measurement-based energy action plans for the airport energy managers that are underpinned by Fault Detection Diagnosis (FDD). The paper first describes the context of the project then it focuses on Building Management Systems describing the current status of the technology and presenting an outlook on their future development. Then a Strengths Weakness Opportunity and Treads (SWOT) framework is defined with the aim of verifying the suitability of an installed BMS system to incorporate Fault Detection and Diagnosis (FDD) tools

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Ren, Haikun; Hacks, Alexander; Schuster, Sebastian; Brillert, Dieter;

    In order to develop the technology of carbon dioxide at so-called supercritical state (sCO2) further, quick and reliable design tools for the different system components, e.g. centrifugal compressors, are required. In this study, a computer program is developed to predict the performance of centrifugal compressors with sCO2 as working fluid. This computer program is based on mean-line analysis, calculates the fluid parameters at selected sections of the meridional plane and plots the performance maps. So-called enthalpy loss coefficients are utilized to describe the difference between the isentropic and the polytropic process. In addition to previous studies, the presented model intends to predict the performance of sCO2 centrifugal compressor with a shrouded impeller and a vaneless diffuser. For this purpose, corresponding loss coefficients are incorporated. Subsequently, the predicted results of this work are compared and validated with computational fluid dynamics (CFD) and experimental results from the EU-project sCO2-HeRo. The prediction of the computer program fits within 5% deviation to the CFD results, and about 4% to the experimental results regarding to pressure ratio. Conference Proceedings of the European sCO2 Conference4th European sCO2 Conference for Energy Systems: March 23-24, 2021, Online Conference, p. 68

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    https://dx.doi.org/10.17185/du...
    Other literature type . 2021
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    Authors: Ana Sánchez-Ostiz; Aurora Monge-Barrio; Miren Juaristi; T. Gómez-Acebo;

    Climate Adaptive Facades are considered promising breakthroughs for the reduction of energy consumption, as energy exchange is enabled when the weather conditions offer benefits instead of threats. So far, conventional building envelops enhance thermal performance through opaque fa��ade components and static insulations. Therefore, natural resources from the building environment remain untapped. Little research has been done in Adaptive Opaque Facades, even if their dynamic behaviour shows a strong potential to exploit environmental resources. For the successful development of these innovative fa��ade systems, a balance between sophistication and benefit is necessary. To manage this objective, the implementation of Smart and Multifunctional Materials in the envelopes seems promising, as they are able to repeatedly and reversibly change some of its functions, features or behaviour over time in response to environmental condition. Consequently, to trigger the response of the envelope, no external actuator or complex software management would be necessary. Nevertheless, these materials do not fulfil all the fa��ade requirements by themselves. Thus, they need to be combined with other adaptive technologies and building elements. This paper shows an initial definition of different fa��ade configurations that include reactive materials which enable the adaptiveness of Opaque Fa��ade Systems. The desired results are new facade roles suitable for a temperate climate, according to the potential of these multi-performance materials in the external layer of the envelope: the dynamic temperature change of the external cladding through the solar reflectance change and the enhancement or prevention of thermal loses through Shape Changing Ventilated Facades. To achieve these new high performances, an ideal approach to the thermal behaviour of each fa��ade layer was done and required physical properties of each elements were highlighted. As a result, we propose a mapping of potentially suitable combination of reactive materials with other building elements that might enable the holistic adaptive thermal performance. Journal of Facade Design and Engineering, Vol. 6 No. 2 (2018): Special Issue ICAE2018

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    https://dx.doi.org/10.7480/jfd...
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    Authors: Carbajo, Sergio; Fallahi, Arya; Arrieta, Miguel; Huang, Wenqian; +4 Authors

    4th Banff Meeting on Structural Dynamics, Banff, Alberta, Canada, 15 Feb 2015 - 18 Feb 2015 ; (2015).

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    Authors: Van Leeuwen, Coen; Bouter, Cornelis; Hindriks, Rick; Wilterdink, Robert;

    The Industry 4.0 Asset Administration Shell provides a standardized mechanism for collaboration between digital systems in the factory. Digital data within factories is typically stored in databases, we explore the requirements of providing an AAS as an interface to the data contained within the aforementioned databases. Based on these requirements, we describe and discuss a proof-of-concept implementation where an AAS is used to publish data stored in a relational database.

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    Authors: Suardi, A.; Stefanoni, W.; Latterini, F.; Pari, R.; +3 Authors

    Among the species cultivated for industrial vegetable oil production, castor could be a good crop for future investments due to the good resistance to pests, tolerance to drought, and suitability for marginal lands cultivation. The paper presents results of the environmental impact assessment and economic feasibility of the production of castor oil from two different castor hybrids comparing four by-products management scenarios and two harvesting systems. Castor hybrid C-856 harvested manually and that involved only the soil incorporation of press cake obtained by the oil extraction resulted as the most sustainable. The hybrid C-1030 resulted as more profitable than C-856 when harvested with the combine harvester. The ratio between gross margin and GWP emissions was applied to calculate the economic performance (gross margin) per unit of environmental burden. Findings showed that Sc1B scenario in case of C-856 cultivar hybrid had a better ratio between economic performance and greenhouse gas (GHG) emitted into the atmosphere (€3.75 per kg CO2eq). Proceedings of the 29th European Biomass Conference and Exhibition, 26-29 April 2021, Online, pp. 1184-1188

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  • Authors: E. Muñoz-Cerón; M.J. del Jesus; P.G. Gómez Vidal; D.L. Lopez Talavera; +7 Authors

    The integration of grid-connected PV systems into buildings or public areas is one of the most usual applications of the photovoltaic solar energy in developed countries. The University of Jaén (Spain) is a pioneering public organism in the field of grid-connected PV systems, as it proves the milestones developed by its IDEA research group in the last decades. The University is working in an ambitious project, the so-called UNIVERSOL project, where the necessary tasks are being carried out in order to evaluate the “photovoltaic potential” of the Campus of the University. For the implementation of this project, there are participating diverse research groups from the University of Jaén, which gives the project a multidisciplinary character. The different tasks assigned in the Universol project will let us obtain a Large-Scale deployment of photovoltaic systems in building integration, so it will convert this Campus in a big public area which combines the PV electricity generation with the common uses of a university place. 25th European Photovoltaic Solar Energy Conference and Exhibition / 5th World Conference on Photovoltaic Energy Conversion, 6-10 September 2010, Valencia, Spain; 5212-5216

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    Authors: Carrillo Salinas, José Manuel; Muñoz Cano, Javier; Makibar Puente, Aitor; Luna, Alberto; +1 Authors

    This paper presents a description of an open-source simulation tool (features, models and calculation procedures) that has been developed under the support of the European project called PVCROPS. The main advantage of this tool is that it uses as input just parameters guaranteed by the manufacturers of the different components of a PV plant. This way, it can be used in contractual frameworks to establish the expected energy yield of a PV plant, to check the actual performance of the PV plant with quality contractual procedures linked to SISIFO, and to assign responsibilities in the case of underperformance. The tool provides, among other simulation results, the energy yield, the analysis and breakdown of energy losses, and financial analysis. Furthermore the software can generate a technical report with the results obtained in the simulation. 31st European Photovoltaic Solar Energy Conference and Exhibition; 2190-2192

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    Conference object . 2015 . Peer-reviewed
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