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Sökning: WFRF:(Olivero P)

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1.
  • Bruzzi, M, et al. (författare)
  • Radiation-hard semiconductor detectors for SuperLHC
  • 2005
  • Ingår i: Nuclear Instruments & Methods in Physics Research. Section A: Accelerators, Spectrometers, Detectors, and Associated Equipment. - : Elsevier BV. - 0167-5087 .- 0168-9002. ; 541:1-2, s. 189-201
  • Tidskriftsartikel (refereegranskat)abstract
    • An option of increasing the luminosity of the Large Hadron Collider (LHC) at CERN to 1035 cm-2 s-1 has been envisaged to extend the physics reach of the machine. An efficient tracking down to a few centimetres from the interaction point will be required to exploit the physics potential of the upgraded LHC. As a consequence, the semiconductor detectors close to the interaction region will receive severe doses of fast hadron irradiation and the inner tracker detectors will need to survive fast hadron fluences of up to above 1016cm-2. The CERN-RD50 project "Development of Radiation Hard Semiconductor Devices for Very High Luminosity Colliders" has been established in 2002 to explore detector materials and technologies that will allow to operate devices up to, or beyond, this limit. The strategies followed by RD50 to enhance the radiation tolerance include the development of new or defect engineered detector materials (SiC, GaN, Czochralski and epitaxial silicon, oxygen enriched Float Zone silicon), the improvement of present detector designs and the understanding of the microscopic defects causing the degradation of the irradiated detectors. The latest advancements within the RD50 collaboration on radiation hard semiconductor detectors will be reviewed and discussed in this work.
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2.
  • Olivero, E., et al. (författare)
  • On key parameters influencing building energy performance
  • 2015
  • Ingår i: 14th International Conference of IBPSA - Building Simulation 2015, BS 2015, Conference Proceedings. - : International Building Performance Simulation Association (IBPSA). ; , s. 480-487
  • Konferensbidrag (refereegranskat)abstract
    • This paper describes the methodology used for selecting the most influential parameters on the energy performance of a building, using limited computing power. Detailed building energy performance models development and their manual calibration are depicted. Novel interfaces for the connection of a detailed building simulation software with advanced analytics are then presented. After a first screening of the parameters by domain experts, two techniques are deployed on the models to reduce the number of parameters to be considered in an automatic calibration process: boundaries check and Morris method. The methodology is applied on two non-residential buildings. Finally, the study results are presented, providing deep insight on the buildings energy performance and thus setting the basis for automatic model calibration and faults detection.
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