The Experts below are selected from a list of 297 Experts worldwide ranked by ideXlab platform

Leonardo Trevisan - One of the best experts on this subject based on the ideXlab platform.

  • Detail Design of the Electron Dump for the SPIDER Beam Source
    IEEE Transactions on Plasma Science, 2012
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the ED is here described, together with the main Design choices that have driven the Design process. The physics and thermomechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the electron dump for the SPIDER beam source
    2011 IEEE NPSS 24th Symposium on Fusion Engineering, 2011
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the electron dump is here described, together with the main Design choices that have driven the Design process. The physics and thermo-mechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the beam source for the spider experiment
    Fusion Engineering and Design, 2010
    Co-Authors: D Marcuzzi, M. Pavei, Anna Rizzolo, Piero Agostinetti, Dalla M Palma, Degli F Agostini, M Tollin, Leonardo Trevisan
    Abstract:

    The ITER Neutral Beam Test Facility (PRIMA - Padova Research on Injector Megavolt Accelerated) is planned to be built at Consorzio RFX (Padova, Italy). PRIMA includes two experimental devices: a full size plasma source with low voltage extraction called SPIDER (Source for Production of Ion of Deuterium Extracted from RF plasma) and a full size neutral beam injector at full beam power called MITICA (Megavolt ITER Injector Concept Advancement). SPIDER is the first experimental device to be built and operated, aiming at testing the extraction of a negative ion beam (made of H and in a later stage D ions) from an ITER size ion source. The main requirements of this experiment are a H / D current of approximately 70 A / 50 A and an energy of 100 keV. This paper presents an overview of the SPIDER Beam Source Design, with a particular focus on the main Design choices, aiming at reaching the best compromise between physics, optics, thermo-mechanical, cooling, assembly and electrical requirements.

Richard Lee Storch - One of the best experts on this subject based on the ideXlab platform.

  • DEVELOPMENT OF A SHIP Detail Design EXPERT SYSTEM
    Journal of ship production, 2002
    Co-Authors: Richard Lee Storch, Jin-hyung Park, David Evans
    Abstract:

    As part of an ONR-sponsored STTR project, the authors have been working on a demonstration of the potential capabilities of a Detail Design expert system. The system is based on a toolkit that significantly reduces the time and cost required to build an advanced expert system, application coordinator and graphical user interface developed by Integration Partners, Inc. The project has focused on development and demonstration of the toolkit, using an air compressor system as the case study. The paper describes the system, discusses the potential benefits and uses of such a system, and presents the case study results.

  • Pipe-routing algorithm development: case study of a ship engine room Design
    Expert Systems with Applications, 2002
    Co-Authors: Jin-hyung Park, Richard Lee Storch
    Abstract:

    Abstract This study presents an automatic pipe-routing algorithm accommodating all major Detail-Design facets. First, the algorithm uses pattern-match methods to provide candidate paths. A cell-generation method is developed which satisfies geometric constraints. This makes the generation and evaluation of paths effective and efficient. Next, various non-geometric aspects, such as material costs, installation costs, and valve operability, are assessed from a fiscal point of view. Then, from a tree of combinations, the algorithm chooses an appropriate path for each pipeline from the candidate paths. Finally, a general approach toward Detail Design automation is suggested. The software implementation was done with Microsoft Visual Basic 6.0 and Access 2000, Heide Corporation Intent! for AutoCAD 2000, and AutoDesk AutoCAD 2000.

Piero Agostinetti - One of the best experts on this subject based on the ideXlab platform.

  • Detail Design of the Electron Dump for the SPIDER Beam Source
    IEEE Transactions on Plasma Science, 2012
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the ED is here described, together with the main Design choices that have driven the Design process. The physics and thermomechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the electron dump for the SPIDER beam source
    2011 IEEE NPSS 24th Symposium on Fusion Engineering, 2011
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the electron dump is here described, together with the main Design choices that have driven the Design process. The physics and thermo-mechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the beam source for the spider experiment
    Fusion Engineering and Design, 2010
    Co-Authors: D Marcuzzi, M. Pavei, Anna Rizzolo, Piero Agostinetti, Dalla M Palma, Degli F Agostini, M Tollin, Leonardo Trevisan
    Abstract:

    The ITER Neutral Beam Test Facility (PRIMA - Padova Research on Injector Megavolt Accelerated) is planned to be built at Consorzio RFX (Padova, Italy). PRIMA includes two experimental devices: a full size plasma source with low voltage extraction called SPIDER (Source for Production of Ion of Deuterium Extracted from RF plasma) and a full size neutral beam injector at full beam power called MITICA (Megavolt ITER Injector Concept Advancement). SPIDER is the first experimental device to be built and operated, aiming at testing the extraction of a negative ion beam (made of H and in a later stage D ions) from an ITER size ion source. The main requirements of this experiment are a H / D current of approximately 70 A / 50 A and an energy of 100 keV. This paper presents an overview of the SPIDER Beam Source Design, with a particular focus on the main Design choices, aiming at reaching the best compromise between physics, optics, thermo-mechanical, cooling, assembly and electrical requirements.

D Marcuzzi - One of the best experts on this subject based on the ideXlab platform.

  • Detail Design of the Electron Dump for the SPIDER Beam Source
    IEEE Transactions on Plasma Science, 2012
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the ED is here described, together with the main Design choices that have driven the Design process. The physics and thermomechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the electron dump for the SPIDER beam source
    2011 IEEE NPSS 24th Symposium on Fusion Engineering, 2011
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the electron dump is here described, together with the main Design choices that have driven the Design process. The physics and thermo-mechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the beam source for the spider experiment
    Fusion Engineering and Design, 2010
    Co-Authors: D Marcuzzi, M. Pavei, Anna Rizzolo, Piero Agostinetti, Dalla M Palma, Degli F Agostini, M Tollin, Leonardo Trevisan
    Abstract:

    The ITER Neutral Beam Test Facility (PRIMA - Padova Research on Injector Megavolt Accelerated) is planned to be built at Consorzio RFX (Padova, Italy). PRIMA includes two experimental devices: a full size plasma source with low voltage extraction called SPIDER (Source for Production of Ion of Deuterium Extracted from RF plasma) and a full size neutral beam injector at full beam power called MITICA (Megavolt ITER Injector Concept Advancement). SPIDER is the first experimental device to be built and operated, aiming at testing the extraction of a negative ion beam (made of H and in a later stage D ions) from an ITER size ion source. The main requirements of this experiment are a H / D current of approximately 70 A / 50 A and an energy of 100 keV. This paper presents an overview of the SPIDER Beam Source Design, with a particular focus on the main Design choices, aiming at reaching the best compromise between physics, optics, thermo-mechanical, cooling, assembly and electrical requirements.

Paolo Veltri - One of the best experts on this subject based on the ideXlab platform.

  • Detail Design of the Electron Dump for the SPIDER Beam Source
    IEEE Transactions on Plasma Science, 2012
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the ED is here described, together with the main Design choices that have driven the Design process. The physics and thermomechanical analyses, carried out to compare the different Design proposals, are also presented.

  • Detail Design of the electron dump for the SPIDER beam source
    2011 IEEE NPSS 24th Symposium on Fusion Engineering, 2011
    Co-Authors: Piero Agostinetti, M. Pavei, N. Pilan, Anna Rizzolo, Leonardo Trevisan, Giuseppe Chitarin, Piergiorgio Sonato, D Marcuzzi, Gianluigi Serianni, Paolo Veltri
    Abstract:

    An electron dump (ED) has been developed and added to the SPIDER negative ion beam source in order to dispose of the electrons exiting from the accelerator, which are mainly generated by stripping reactions. This component prevents from having unwanted and possibly concentrated heat load from electrons on the downstream components and permits to obtain on the diagnostic calorimeter a Detailed measurement of the negative ion beam. The Detail Design of the electron dump is here described, together with the main Design choices that have driven the Design process. The physics and thermo-mechanical analyses, carried out to compare the different Design proposals, are also presented.